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HORIKE ShoheiCenter for Environmental ManagementAssociate Professor
Researcher basic information
■ Research Keyword■ Research Areas
- Nanotechnology/Materials / Composite materials and interfaces
- Nanotechnology/Materials / Energy chemistry
- Manufacturing technology (mechanical, electrical/electronic, chemical engineering) / Electronic devices and equipment
- Nanotechnology/Materials / Organic functional materials
- Nanotechnology/Materials / Applied physics - general
Research activity information
■ Award- Jun. 2024 神戸大学 令和6年度優秀若手研究者賞
- Jun. 2024 The 11th International Conference on Molecular Electronics & Bioelectronics (M&BE11), Poster Award, Simultaneous Dynamic/Static Detection of Infrared Radiation Using Organic Pyroelectric Polymers Stacked with Thermoelectric Carbon Nanotubes
- Oct. 2023 神戸大学 学長表彰
- Sep. 2023 応用物理学会 有機分子・バイオエレクトロニクス分科会(M&BE)奨励賞
- Jul. 2023 令和5年度 前之園記念若手優秀論文賞, 有機超塩基ドーピングによる高耐熱n 型カーボンナノチューブの創出
- Mar. 2023 第53回 応用物理学会 講演奨励賞, 有機超塩基ドーピングによる大気中高温下で長期安定なn 型カーボンナノチューブの創出
- Mar. 2021 応用物理学会 第68回春季学術講演会 ポスター賞, コロナポーリングにより全面分極した半導体型SWCNTsの熱電変換特性
- Nov. 2017 Power MEMS 2017, Outstanding Poster Award, Field-Effect and Chemical Charge-type Modulations of Carbon Nanotubes using Functional Polymers for Thermoelectric Energy Harvesters
- Mar. 2015 神戸大学工学振興会, 神戸大学工学振興会理事長賞
- Last, Aug. 2025, Information and Functional MaterialsAdvances in Organic Thermoelectric Materials: From Molecular Design to Device Implementation[Refereed]
- Elsevier BV, Jul. 2025, Chemical Engineering Journal, 516, 164119 - 164119[Refereed]Scientific journal
- Jun. 2025, Journal of Materials Chemistry CEnhancing thermal stability of n-type conduction in carbon nanotubes via cation replacement mediated by bicyclic guanidinium salts[Refereed]
- Corresponding, Jun. 2025, The Journal of Physical Chemistry C[Refereed]
- Abstract Although the solid/liquid, liquid/liquid, and solid/solid transition behaviors of ionic liquids (ILs) have been extensively studied, reports on their liquid-to-gas phase transition dynamics are scarce, due to their low volatility at ambient pressure. Here, sets of evaporation coefficients determined in vacuo and thermogravimetry curves recorded under reduced pressure were used to construct the saturation vapor pressure curves of a series of ILs. The phase transitions of these ILs are visualized as phase diagrams containing liquid/gas phase boundaries. These diagrams enable the estimation of the vapor pressure and boiling point of the IL at a specific temperature and pressure, respectively.Oxford University Press (OUP), May 2025, Bulletin of the Chemical Society of Japan, 98(5) (5), uoaf039[Refereed]Scientific journal
- Apr. 2025, Discover Polymers, 2, 8, English[Refereed][Invited]
- Jan. 2025, キャパシタ技術, 32(1) (1), 9 - 12IoTセンサ用電源を志向した熱電キャパシタの開発[Invited]
- Jan. 2025, ACS Applied Materials & Interfaces, 17(3) (3), 4984 - 4995, EnglishContributions of both the Eastman entropy of transfer and electric double layer to the electromotive force of ionic thermoelectric supercapacitors[Refereed]Scientific journal
- Dec. 2024, 2024 IEEE 23rd International Conference on Micro and Miniature Power Systems, Self-Powered Sensors and Energy Autonomous Devices (PowerMEMS), Tonsberg, Norway, 2024, 264 - 267Enhanced Thermopower In Thermogalvanic Cells Using D2O As a Solvent
- Dec. 2024, 2024 IEEE 23rd International Conference on Micro and Miniature Power Systems, Self-Powered Sensors and Energy Autonomous Devices (PowerMEMS), Tonsberg, Norway, 2024, 95 - 98Creating Thermally Stable P-Type Carbon Nanotubes Via Coordination Chemistry For Thermoelectric Materials
- Dec. 2024, 応用物理, 93(12) (12), 683 - 689オールカーボンナノチューブ熱電発電デバイスの開発[Refereed][Invited]
- Nov. 2024, Materials Research Express, 11(10) (10), 101501High-voltage thermocell modules for direct device operation: eliminating the need for DC-DC converters[Refereed]
- Sep. 2024, Bulletin of the Chemical Society of Japan, 97(10) (10), uoae095, EnglishThin-film fabrication of polythiophene block copolymer via friction transfer[Refereed]
- Carbon nanotubes (CNTs) are emerging as promising platforms for organic thermoelectric (TE) materials. However, the poor stability of n-doped states often presents a problem for the long-term operation of p–n junction TE modules. In this study, we synthesized a cross-linked organic superbase, 2TBD-C10, as a dopant to create n-type CNTs that are resistant to air, heat, and humidity. When comparing the stability of 2TBD-C10-doped CNTs with those doped by a conventional superbase (TBD), we found that the enhanced stability could be attributed to the unique molecular structure of 2TBD-C10. This structure aids in effective adsorption on the CNT surfaces through multiple points, reduces volatility because of increased molecular weight, and suppresses water adsorption owing to the presence of hydrophobic alkyl chains. The results of our study demonstrate that tailoring the primary molecular structures of dopants can remarkably improve the stability of doped states in CNTs. The stable n-type materials were integrated into all-CNT TE modules, achieving good-to-excellent performance (power output of approximately 35 μW from a temperature difference of approximately 65 °C), making them suitable for powering wireless sensors and green light-emitting diodes.American Association for the Advancement of Science (AAAS), Sep. 2024, Energy Material Advances, 5, 0123[Refereed]Scientific journal
- Aug. 2024, Materials Today Energy, 45, 101668Self-Powered Sensors Utilizing Single Pillar Thermocells with Pyrolytic Graphite Sheet Electrodes: Harvesting Body Heat and Solar Thermal Energy[Refereed]
- Elsevier BV, Jun. 2024, Diamond and Related Materials, 147, 111306 - 111306[Refereed]Scientific journal
- Abstract Internet of Things (IoT) is crucial for a sustainable society from the viewpoints of optimization of energy consumption and using timing, thus aiding reduced CO2 emissions. Traditional power supply methods such as batteries are impractical for driving the trillions of sensors that future systems will likely utilize for collecting extensive environmental information. Thermoelectric power generators that enable direct heat‐to‐electricity energy conversion are considered a promising power supplying technology without maintenance because thermal energy is a ubiquitous energy source. This study develops a new class of thermoelectric modules using redox‐free electrolytes—‐thermally chargeable supercapacitor (TCS)—‐with extremely high thermoelectromotive force, generating over 2 V from a temperature difference of ≈65 °C without requiring a DC‐to‐DC converter. Additionally, using a voltage detector is demonstrated to be a versatile and efficient toolbox for the charge management of TCS. Optimization of the circuit comprising the TCS module with the ultrahigh open‐circuit voltage and voltage detector enables the automatic charging of a large capacitor, which intermittently powers different devices such as a beacon, LED, piezo speaker, and motor with the desired frequency. This approach represents a significant step toward sustainable energy in the context of low‐grade thermal energy harvesting and optimized energy consumption through IoT.Wiley, Mar. 2024, Advanced Materials Technologies, 9(11) (11), 2301849[Refereed]Scientific journal
- Abstract Developing efficient and stable carbon nanotube (CNT) doping techniques and elucidating their chemistry is essential for their further implementation in electronic and energy devices. Here, protonic acids and lithium salts are employed as p-type inducers and stabilizers of the doped state, respectively. Leveraging the electron-withdrawing capability of protons, protonic acids can easily induce heavily p-doped states in CNTs. Anionic species from the acids attach to the positively charged CNTs to achieve charge compensation. Introducing lithium salts with bulky, charge-delocalized anions to the p-doped CNTs results in an anion replacement driven by the free energy gain. The newly formed complexes demonstrate outstanding thermal stability in air, enduring a temperature of 100 °C for over a year. The chemical hardness of the applied anion effectively explains the difference in stability of the doped CNTs, indicating that the doping process and its stabilization can be understood and controlled through complex chemistry.Corresponding, Springer Science and Business Media LLC, Feb. 2024, Communications Materials, 5(1) (1), 21[Refereed]Scientific journal
- Feb. 2024, Materials Today Physics, 41, 101337Contribution of the Seebeck effect to liquid-flow-induced voltage generation in carbon nanotubes[Refereed]
- Corresponding, Jan. 2024, 電子情報通信学会技術研究報告 = IEICE technical report : 信学技報, 123(333) (333), 1 - 6, Japanese有機超塩基カチオン含有イオン液体の合成とカーボンナノチューブ電気化学ドーピングへの応用
- Corresponding, Jan. 2024, 電子情報通信学会技術研究報告 = IEICE technical report : 信学技報, 123(333) (333), 7 - 12, Japaneseドープカーボンナノチューブの錯体化学と安定化技術
- Corresponding, Elsevier BV, Jan. 2024, Carbon, 218, 118667 - 118667[Refereed]Scientific journal
- American Chemical Society (ACS), Dec. 2023, ACS Applied Materials & Interfaces, 16(1) (1), 1198 - 1205[Refereed]Scientific journal
- 1D organic semiconductor nanostructures have attracted considerable attention; however, only a few studies are conducted on p–n junction organic semiconductor 1D nanostructures. Herein, p‐ and n‐type and p–n junction phthalocyanine (Pc) nanorods are grown in the out‐of‐plane direction of a substrate via vacuum deposition using typical organic semiconductors with copper phthalocyanine (CuPc) as the p‐type semiconductor and copper octafluorophthalocyanine (F8CuPc) and copper hexadecafluorophthalocyanine (F16CuPc) as the n‐type semiconductors. p–n junction Pc nanorods are fabricated via the continuous deposition of F8CuPc and F16CuPc onto CuPc nanorods. Fourier‐transform infrared spectroscopy reveals that the Pc molecules in the nanorods are perpendicularly aligned, with their molecular planes oriented toward the longitudinal direction of the nanorods. The local current–voltage properties of the nanorods are measured using conductive atomic force microscopy. The hole mobility in the CuPc nanorods is 10 times higher than that in the CuPc thin films. The p–n junction properties of F8CuPc/CuPc nanorods are evaluated.Wiley, Oct. 2023, physica status solidi (a), 220(24) (24), 2300243[Refereed]Scientific journal
- Wearable piezoelectric micropumps may contribute to improving drug delivery in the field of medicine. Poly(vinylidene fluoride/trifluoroethylene) (P(VDF/TrFE)), an organic ferroelectric polymer, is a desirable material for fabricating the piezoelectric layer of medical micropumps owing to its biocompatibility and flexibility. However, a large voltage is required to drive the micropumps because the piezoelectric response of P(VDF/TrFE) is small compared with that of inorganic materials, such as lead zirconate titanate. In this study, thin films (P(VDF/TrFE)) are focused that can reduce applied voltage and improve the flexibility of entire actuators. In addition, actuators sealed with poly(monochloro‐paraxylene) (Parylene C) are considered, which has excellent chemical resistance, flexibility, and biocompatibility. The calculated piezoelectric constant |e31| of the fabricated P(VDF/TrFE) thin films is 42 mC m−2. A large deformation of 1 mm is observed in the fabricated cantilever‐type actuators sealed with Parylene C when a voltage of 160 V is applied. Furthermore, the vibration of the actuators by the reverse piezoelectric effect on the water surface is observed. It is indicated in these results that a low voltage can safely drive P(VDF/TrFE) thin‐film piezoelectric actuators sealed with Parylene C in medical micropumps.Wiley, Sep. 2023, physica status solidi (a), 220(24) (24), 2300250[Refereed]Scientific journal
- Abstract An isotropic thermo‐electrochemical cell is introduced with a high Seebeck coefficient (Se) of 3.3 mV K−1 that uses a ferricyanide/ferrocyanide/guanidinium‐based agar‐gelated electrolyte. A power density of about 20 µW cm−2 is achieved at a temperature difference of about 10 K, regardless of whether the heat source is on the top or bottom section of the cell. This behavior is very different from that of cells with liquid electrolytes, which exhibit high anisotropy, and for which high Se values are achieved only by heating the bottom electrode. The guanidinium‐containing gelatinized cell does not exhibit steady‐state operation, but its performance recovers when disconnected from the external load, suggesting that the observed power drop under load conditions is not due to device degeneration. The large Se value and isotropic properties can mean that the novel system represents a major advancement from the standpoint of harvesting of low‐temperature heat, such as body heat and solar thermal heat.Wiley, Apr. 2023, Global Challenges, 7(6) (6), 2200207[Refereed]Scientific journal
- Feb. 2023, Molecular Systems Design & Engineering, 8(2) (2), 189 - 194, English[Refereed]Scientific journal
- Abstract Normal alkanes are among the simplest molecules that can be studied in physical chemistry. However, there is still more to learn about their liquid-to-gas phase transition characteristics, especially in vacuo. Here, we investigated the evaporation behavior of 12 different normal alkanes using thermogravimetry, both in air, and under reduced pressures (5000 to 10−2 Pa). The reduced pressures lowered the evaporation-onset temperatures of the normal alkanes. The evaporation-onset temperatures at 1 Pa were linearly correlated with the chain lengths (molecular weights). Furthermore, we found that the reduced pressures enabled the effective distillation of binary mixtures of normal alkanes because of the differences in the evaporation-onset temperatures. It was empirically determined that distillation (isolated evaporation of one of the binary mixture components) was achieved at ∼1 Pa when the chain of one of the alkanes was 30% longer than that of the other.IOP Publishing, Jul. 2022, Japanese Journal of Applied Physics, 61(8) (8), 086507[Refereed]Scientific journal
- Abstract The preparation of air and thermally stable n-type carbon nanotubes is desirable for their further implementation in electronic and energy devices that rely on both p- and n-type material. Here, a series of guanidine and amidine bases with bicyclic-ring structures are used as n-doping reagents. Aided by their rigid alkyl functionality and stable conjugate acid structure, these organic superbases can easily reduce carbon nanotubes. n-Type nanotubes doped with guanidine bases show excellent thermal stability in air, lasting for more than 6 months at 100 °C. As an example of energy device, a thermoelectric p/n junction module is constructed with a power output of ca. 4.7 μW from a temperature difference of 40 °C.Springer Science and Business Media LLC, Jun. 2022, Nature Communications, 13(1) (1), 3517[Refereed]Scientific journal
- Jun. 2022, JAPANESE JOURNAL OF APPLIED PHYSICS, 61(SE) (SE), English[Refereed]Scientific journal
- Elsevier BV, May 2022, Polymer, 249, 124822 - 124822[Refereed]Scientific journal
- The use of protonated 3,4-ethylenedioxythiophene moieties as an end group could be a promising approach to prepare organic conductors.Royal Society of Chemistry (RSC), Feb. 2022, RSC Advances, 12(11) (11), 6748 - 6754[Refereed]Scientific journal
- American Chemical Society ({ACS}), Jan. 2022, ACS Applied Materials & Interfaces, 14(20) (20), 22921 - 22928[Refereed]Scientific journal
- The control of cross-linking of polythiophene with cyclic siloxane was achieved and provided to their mechanical properties and elastic recovery. The cross-links led to high recovery of crystallite orientation under stretching.Royal Society of Chemistry (RSC), 2022, Polymer Chemistry, 13(39) (39), 5536 - 5544[Refereed]Scientific journal
- The intrinsically positive Seebeck coefficient of ionic material was successfully converted into negative by using PEDOT:PSS electrodes, offering a useful method for the development of a thermally chargeable supercapacitor with n-type polarity.Royal Society of Chemistry (RSC), Oct. 2021, Journal of Materials Chemistry C, 9(44) (44), 15813 - 15819Scientific journal
- Aug. 2021, Chemical Physics Letters, 776, 138663 - 138663, English[Refereed]Scientific journal
- AIP Publishing, Jun. 2021, Applied Physics Letters, 118(24) (24), 243907 - 243907[Refereed]Scientific journal
- AIP Publishing, Apr. 2021, Applied Physics Letters, 118(17) (17), 173902 - 173902[Refereed]Scientific journal
- Nov. 2020, JOURNAL OF MATERIALS CHEMISTRY A, 8(43) (43), 22544 - 22556, English[Refereed]Scientific journal
- Sep. 2020, CHEMICAL PHYSICS LETTERS, 755, 137801, English[Refereed]Scientific journal
- Sep. 2020, ACS APPLIED MATERIALS & INTERFACES, 12(39) (39), 43674 - 43683, English[Refereed]Scientific journal
- Corresponding, May 2020, MOLECULAR SYSTEMS DESIGN & ENGINEERING, 5(4) (4), 809 - 814, English[Refereed]Scientific journal
- Apr. 2020, JAPANESE JOURNAL OF APPLIED PHYSICS, 59, English[Refereed]Scientific journal
- Mar. 2020, JAPANESE JOURNAL OF APPLIED PHYSICS, 59, English[Refereed]Scientific journal
- Mar. 2020, JAPANESE JOURNAL OF APPLIED PHYSICS, 59, English[Refereed]Scientific journal
- Mar. 2020, JAPANESE JOURNAL OF APPLIED PHYSICS, 59, English[Refereed]Scientific journal
- Mar. 2020, JAPANESE JOURNAL OF APPLIED PHYSICS, 59, English[Refereed]Scientific journal
- Last, 2020, 2019 19TH INTERNATIONAL CONFERENCE ON MICRO AND NANOTECHNOLOGY FOR POWER GENERATION AND ENERGY CONVERSION APPLICATIONS (POWERMEMS), English[Refereed]International conference proceedings
- 材料技術研究協会, Nov. 2019, 材料技術 = Material technology, 37(6) (6), 146 - 152, JapaneseThermoelectric carbon nanotubes for energy harvesting[Refereed][Invited]
- Jul. 2019, MOLECULAR CRYSTALS AND LIQUID CRYSTALS, 688(1) (1), 53 - 59, English[Refereed]Scientific journal
- Lead, 化学工業社, May 2019, ケミカルエンジニヤリング = Chemical engineering, 64(5) (5), 335 - 342, Japanese有機強誘電体薄膜を利用した圧電型振動発電[Invited]
- Feb. 2019, POLYMER JOURNAL, 51(2) (2), 257 - 263, English[Refereed]Scientific journal
- Lead, 電気化学会溶融塩委員会, Jan. 2019, Molten Salts, 62(1) (1), 18 - 24, JapaneseThermodynamics of ionic liquid vaporization under vacuum[Refereed][Invited]
- 電子情報通信学会, Nov. 2018, 電子情報通信学会技術研究報告 = IEICE technical report : 信学技報, 118(327) (327), 33 - 36, JapaneseDevelopments of piezoelectric stress sensors using organic ferroelectric films for wireless smart insole
- Lead, Sep. 2018, PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 20(33) (33), English[Refereed]Scientific journal
- Jun. 2018, FLEXIBLE AND PRINTED ELECTRONICS, 3(2) (2), English[Refereed]Scientific journal
- Lead, Mar. 2018, JAPANESE JOURNAL OF APPLIED PHYSICS, 57(3) (3), English[Refereed]Scientific journal
- 2018, Journal of Physics: Conference Series, 1052, 012112, EnglishOrientation Dependence of Power Generation on Piezoelectric Energy Harvesting Using Stretched Ferroelectric Polymer FilmsInternational conference proceedings
- Lead, 2018, Journal of Physics: Conference Series, 1052, 012125, EnglishField-effect and chemical charge-type modulations of carbon nanotubes using functional polymers for thermoelectric energy harvestersInternational conference proceedings
- Jan. 2018, CHEMICAL PHYSICS LETTERS, 691, 219 - 223, English[Refereed]Scientific journal
- 2018, SENSORS AND MATERIALS, 30(12) (12), 2873 - 2879, English[Refereed]Scientific journal
- Dec. 2017, MOLECULAR SYSTEMS DESIGN & ENGINEERING, 2(5) (5), 616 - 623, English[Refereed]Scientific journal
- 電子情報通信学会, Nov. 2017, 電子情報通信学会技術研究報告 = IEICE technical report : 信学技報, 117(313) (313), 21 - 26, JapaneseOptimized condition of vapor phase polymerization of EDOT for thermoelectric conversion
- Lead, Oct. 2016, CHEMISTRY LETTERS, 45(10) (10), 1156 - 1158, English[Refereed]Scientific journal
- Lead, Aug. 2016, APPLIED PHYSICS EXPRESS, 9(8) (8), English[Refereed]Scientific journal
- Lead, Mar. 2016, JAPANESE JOURNAL OF APPLIED PHYSICS, 55(3) (3), English[Refereed]Scientific journal
- Lead, May 2014, JAPANESE JOURNAL OF APPLIED PHYSICS, 53(5) (5), English[Refereed]Scientific journal
- May 2025, 18th Joint European Thermodynamics Conference, EnglishGrahame equation to study ionic thermoelectric supercapacitors
- Last, 31 Mar. 2025, 2024年度 膜⼯学春季講演会 学⽣ポスター発表マルチレドックスシステムによる温度変化発電デバイスに関する研究
- 31 Mar. 2025, 2024年度 膜⼯学春季講演会 学⽣ポスター発表亜鉛フタロシアニン⼀軸配向ナノワイヤの作製と評価
- Mar. 2025, 第72回応用物理学会春季学術講演会ジアミノオリゴシロキサンによる強誘電性高分子の架橋ネットワーク化とナノ構造・電気物性評価
- Mar. 2025, 第72回応用物理学会春季学術講演会高沸点両親媒性溶媒を用いた成膜と一軸延伸処理によるポリフッ化ビニリデン薄膜の構造制御と強誘電特性評価
- Mar. 2025, 日本物理学会 2025年春季大会電気二重層中での温度勾配を考慮し一般化されたGrahame方程式
- Mar. 2025, 第72回応用物理学会春季学術講演会イオン熱電キャパシタの電圧発現機構の探索
- Mar. 2025, 第72回応用物理学会春季学術講演会3分割電極パターニングによる自己励振/変位検知有機フィルムの評価
- Lead, Mar. 2025, 第72回応用物理学会春季学術講演会熱輸送・自然放熱機構を搭載した熱電キャパシタモジュールによる温度差発電とIoTセンサ駆動
- Lead, Mar. 2025, 日本化学会第105春季年会Charge Carrier Modulation of Carbon Nanotubes by One-Shot Electrochemical Doping Using Ionic Liquids Derived from Organic Superbases
- 21 Nov. 2024, The;International Conference on Micro&Miniature Power Systems;Self-Powered Sensors;Energy Autonomous Devices (PowerMEMS)ENHANCED THERMOPOWER IN THERMOGALVANIC CELLS USING D2O AS A SOLVENT[Refereed]
- Last, Nov. 2024, The;International Conference on Micro;Miniature Power Systems;Self-Powered Sensors;Energy Autonomous Devices (PowerMEMS)CREATING THERMALLY STABLE P-TYPE CARBON NANOTUBES VIA COORDINATION CHEMISTRY FOR THERMOELECTRIC MATERIALS[Refereed]
- Lead, Nov. 2024, 4th International Conference on Carbon Chemistry and MaterialsBistable Charge Carrier Modulation of Carbon Nanotubes by Electrochemical Doping[Refereed]
- Last, Nov. 2024, 4th International Conference on Carbon Chemistry and MaterialsAir-, Humidity-, and Thermally Stable n-Type Conduction in Carbon Nanotubes Induced by Doping with Organic Superbases for Thermoelectric Materials[Refereed]
- 18 Sep. 2024, 第85回応用物理学会秋季学術講演会マルチレドックスシステムによる温度変化発電デバイス
- 18 Sep. 2024, 第85回応用物理学会秋季学術講演会P(VDF-TrFE)/CNT積層型赤外線センサによる動的/静的熱源の同時検出
- 18 Sep. 2024, 第85回応用物理学会秋季学術講演会有機強誘電体を用いた自己励振/自己変位検知フィルムの作製と評価
- 17 Sep. 2024, 第85回応用物理学会秋季学術講演会 シンポジウム:有機・イオン熱電変換材料の開発とデバイス応用クロージング
- 17 Sep. 2024, 第85回応用物理学会秋季学術講演会クロスリンク型有機超塩基ドーパントによる高安定性n型カーボンナノチューブの創出と熱電モジュール応用
- 17 Sep. 2024, 第85回応用物理学会秋季学術講演会 シンポジウム:有機・イオン熱電材料の開発とデバイス応用オープニング
- 16 Sep. 2024, 第85回応用物理学会秋季学術講演会ジアミン架橋剤による強誘電性高分子の架橋ネットワーク化と 構造・物性評価
- 16 Sep. 2024, 第85回応用物理学会秋季学術講演会亜鉛フタロシアニン一軸配向ナノワイヤの作製と評価
- 16 Sep. 2024, 第85回応用物理学会秋季学術講演会ソフトアニオン配位によるp型カーボンナノチューブの特異なラマンスペクトル変化
- 16 Sep. 2024, 第85回応用物理学会秋季学術講演会カーボンナノチューブのドープ状態における錯体化学と高耐熱化技術
- 30 Jul. 2024, 第6回 先端膜工学研究センター成果発表会極性制御したカーボンナノチューブ膜による 熱電変換素子の開発
- 21 Jun. 2024, The 11th International Conference on Molecular Electronics & Bioelectronics (M&BE11)Gram-scale Polymer Thermoelectric module for Self-powered Sensors
- 21 Jun. 2024, The 11th International Conference on Molecular Electronics & Bioelectronics (M&BE11)Real-Time Chemical Reaction Analysis during Polyurea Formation Studied by Time-Resolved Infrared Spectroscopy
- Last, 21 Jun. 2024, The 11th International Conference on Molecular Electronics & Bioelectronics (M&BE11)Cross-linked organic superbases as efficient dopant for creating humidity-, thermally stable n-type carbon nanotubes
- Corresponding, 19 Jun. 2024, The 11th International Conference on Molecular Electronics & Bioelectronics (M&BE11)Effective Enhancement of Thermal Stability in p-doped Carbon Nanotubes via Soft-Anion Coordination
- Lead, 19 Jun. 2024, The 11th International Conference on Molecular Electronics & Bioelectronics (M&BE11)Phase transition diagrams of ionic liquids with liquid/gas phase boundaries investigated by thermogravimetry under vacuum
- Corresponding, 19 Jun. 2024, The 11th International Conference on Molecular Electronics & Bioelectronics (M&BE11)Simultaneous Dynamic/Static Detection of Infrared Radiation Using Organic Pyroelectric Polymers Stacked with Thermoelectric Carbon Nanotubes
- May 2024, 13th International Symposium on Organic Molecular Electronics (ISOME 2024)Doping Control in Organic Semiconductors Using Photobase Generators
- Mar. 2024, 2023年度 先端膜工学春季講演会 学生ポスター発表錯体化学に立脚したカーボンナノチューブドープ状態の安定性原理解明と超高耐熱化技術の開発
- Mar. 2024, 日本化学会第104春季年会10 mV/K級の熱起電力を発現する熱電キャパシタ
- Mar. 2024, 第71回応用物理学会春季学術講演会イオン熱電キャパシタの解放端電圧生成機構
- Mar. 2024, 第71回応用物理学会春季学術講演会熱電機能を有するスーパーキャパシタの巨大熱起電力と発電応用
- Jan. 2024, 電子情報通信学会OME2023-78有機超塩基カチオン含有イオン液体の合成とカーボンナノチューブ電気化学ドーピングへの応用
- Jan. 2024, 電子情報通信学会OME2023-79ドープカーボンナノチューブの錯体化学と安定化技術
- Dec. 2023, 神戸大学研究基盤センター若手フロンティア研究会有機超塩基イオン液体によるカーボンナノチューブの電気化学ドーピングと熱電特性制御
- Dec. 2023, 神戸大学研究基盤センター若手フロンティア研究会p型CNTのドープ状態安定性におけるHSAB則
- Lead, Sep. 2023, International Workshop on Thermo-electrochemical Devices 2023Thermally chargeable supercapacitor based on ionic hydrogels with tunable polarity
- Sep. 2023, 第84回応用物理学会秋季学術講演会有機超塩基ドーピングによる高耐熱n型カーボンナノチューブの開発[Invited]
- Sep. 2023, 第84回応用物理学会秋季学術講演会プロトン酸によるカーボンナノチューブのp型ドーピングとイオン交換による高耐熱化
- Sep. 2023, 第84回応用物理学会秋季学術講演会有機超塩基カチオンを有するイオン液体の合成 カーボンナノチューブの電気化学ドーピングへの応用
- Sep. 2023, 第84回応用物理学会秋季学術講演会積層した円型P(VDF/TrFE)薄膜素子の逆圧電特性評価
- Sep. 2023, 第84回応用物理学会秋季学術講演会NiCr 極薄電極を用いたP (VDF TrFE)焦電型センサの赤外吸収および電圧応答特性
- Sep. 2023, 第84回応用物理学会秋季学術講演会基板表面処理による垂直配向芳香族ポリエステル薄膜における 双極子配向制御
- Sep. 2023, 第84回応用物理学会秋季学術講演会リンクル構造を導入した有機薄膜圧電センサの作製と評価
- Sep. 2023, 第84回応用物理学会秋季学術講演会カーボンナノチューブ/ポリマーコンポジットの摩擦転写による一軸配向膜の作製
- Sep. 2023, 第84回応用物理学会秋季学術講演会高沸点両親媒性溶媒を用いたPVDF薄膜の電気特性評価
- Aug. 2023, KJF International Conference on Organic Materials for Electronics and Photonics 2023In situ observation of polyurea synthesis using fast time resolved infrared spectroscopy
- Aug. 2023, KJF International Conference on Organic Materials for Electronics and Photonics 2023Characterization of liquid crystal polymer films prepared through gel states for electret
- Jul. 2023, 第69回高分子研究発表会(神戸)電荷保持特性向上に向けた液晶ポリマーの構造制御
- Jul. 2023, 第69回高分子研究発表会(神戸)医療機器用コーティングした P(VDF/TrFE) 薄膜のアクチュエーション機能
- Jul. 2023, 第69回高分子研究発表会(神戸)両親媒性溶媒を用いたポリフッ化ビニリデンのスピンコート薄膜の構造変化に関する研究
- May 2023, 第72回高分子学会年次大会真空蒸着法による有機半導体pn 接合ナノロッドの作製と評価
- Mar. 2023, 日本化学会第103春季年会n-Type Carbon Nanotubes with Extremely High Thermal Stability in Air Produced by Doping with Organic Superbases
- Mar. 2023, 第70回応用物理学会春季学術講演会イオン液体の気液相転移相図の作成とヒートパイプ作動流体への応用可能性
- Mar. 2023, 第70回応用物理学会春季学術講演会フレキシブル 有機 圧電センサによる 心臓拍動 の多点測定 と 臓器応力センシング
- Mar. 2023, 第70回応用物理学会春季学術講演会分極パターニングCNT/P(VDF-TrFE)を利用した焦電・熱電応答の単一素子同時検出
- Mar. 2023, 第70回応用物理学会春季学術講演会銀微粒子を光熱変換層にもつ焦電型赤外線センサー
- Mar. 2023, 第70回応用物理学会春季学術講演会熱化学セルに及ぼすGuanidinium添加のエントロピー効果
- Mar. 2023, 第70回応用物理学会春季学術講演会真空下熱重量測定を利用した直 状アルカンの蒸気圧測定とアルカン等量混合物の単離蒸発挙動解析
- Mar. 2023, 第70回応用物理学会春季学術講演会有機圧電フィルムを用いた磁界振動発電の特性評価
- Dec. 2022, 13th International Conference on Nano-Molecular Electronics (ICNME2022)Thermally stable n-type carbon nanotubes doped with organic superbases for flexible themoelectric generaors
- Dec. 2022, 13th International Conference on Nano-Molecular Electronics (ICNME2022)Reverse piezoelectric response of P(VDF/TrFE) thin films for medical micropump
- Dec. 2022, 13th International Conference on Nano-Molecular Electronics (ICNME2022)Optical properties of phenyl-cored thiophene dendrimer with multiple π-conjugations
- Dec. 2022, 13th International Conference on Nano-Molecular Electronics (ICNME2022)Fabrication and characterization of pn-junction metal phthalocyanine nanorods using vacuum deposition
- Dec. 2022, 13th International Conference on Nano-Molecular Electronics (ICNME2022)Preparation of vertically oriented aromatic polyester thin films by thermal chemical vapor deposition
- Sep. 2022, 第83回応用物理学会秋季学術講演会医療用マイクロポンプに向けたP(VDF/TrFE)薄膜の逆圧電特性評価
- Sep. 2022, 第83回応用物理学会秋季学術講演会ゲル状態を介した液晶ポリマーの膜質制御と電荷保持特性
- Sep. 2022, 第83回応用物理学会秋季学術講演会多重π共役フェニルコアチオフェンデンドリマーにおける広帯域光吸収と分子内エネルギー移動
- Sep. 2022, 第83回応用物理学会秋季学術講演会両親媒性溶媒を用いたPVDF薄膜の構造制御
- Sep. 2022, 第83回応用物理学会秋季学術講演会有機超塩基ドーピングによる大気中高温下で長期安定なn型カーボンナノチューブの創出
- Sep. 2022, 第83回応用物理学会秋季学術講演会高速時間分解 FT-IRを用いたP(VDF-TrFE)薄膜の誘電分極と分子配向変化の相関
- Sep. 2022, 第83回応用物理学会秋季学術講演会熱化学気相成長法による垂直配向芳香族ポリエステル薄膜の作製
- 2022, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 69thPolarization-switching dynamics in P(VDF-TrFE) film revealed by in-situ fast time-resolved infrared spectroscopy and polarization switching
- 2022, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 69thMultiaxial stress analysis using organic piezoelectric thin film sensors embedded in biomimetic rubber
- 2022, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 69thSynthesis and evaluation of silver micro particles with anisotropic shape
- 2022, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 69thCyclourea crystals fabricated via ionic liquid-assisted vacuum vapor deposition
- 2022, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 69thChain-length dependency of normal alkane evaporation under vacuum
- 2022, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 69thPyroelectricity of Uniaxially Aligned Ferroelectric Polymer Thin Film by Stretching
- 2021, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 82ndEnergy-harvesting by thermo-electrochemical cells
- 2021, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 68thThermoelectric property of fully polarized semiconducting SWCNTs by corona poling
- 2020, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 67thIn situ observation of polyurea synthesis and hydrogen bond formation using fast time resolved infrared spectroscopy
- 2020, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 67thSensor and power generation properties of flexible organic piezoelectric thin films encapsulated by parylene for implantable device
- 2020, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 67thVariation of interfacial electrical property of ionic liquid during solid-liquid phase transition on polarization field of TGS
- 2020, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 67thWavelength dependence of voltage sensitivity in organic pyroelectric infrared sensor with dielectric multilayer structure
- 2020, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 67thCharacterization of ferroelectric polymer chemically crosslinked with trifunctional allyl group
- 2020, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 67thElucidation of dipole field doping mechanism for thermoelectric property of semiconducting SWCNT
- 2019, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 80th有機強誘電体分極場を用いた半導体型単層カーボンナノチューブのp/n極性制御と熱電変換特性
- 2019, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 80thパリレンCダイマーの真空中熱挙動の観察
- 2019, フッ素化学討論会講演要旨集, 42ndフッ素系高分子圧電体を用いたユニモルフカンチレバー型振動発電デバイスの特性評価
- 2019, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 80thフレキシブル有機圧電薄膜を用いた心臓拍動検出と圧電発電
- 2019, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 80thドナー・アクセプター型光電変換高分子の光安定性に関する定量的評価
- 2019, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 66th, ROMBUNNO.11p‐M111‐16, Japanese基板温度による尿素オリゴマー蒸着膜の凝集構造変化と分子間水素結合
- 2019, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 66th, ROMBUNNO.9p‐PB3‐25, Japanese真空蒸着法によるpn接合フタロシアニンナノロッドの作製と評価 II
- 2019, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 66th, ROMBUNNO.11p‐M111‐15, Japanese有機焦電型赤外線センサの光学設計に向けた中赤外線領域におけるP(VDF‐TrFE)薄膜の光学定数算出
- 2019, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 66th, ROMBUNNO.9a‐PA2‐29, Japanese有機圧電エナジーハーベスターにおける振動発電特性の膜厚依存性
- 2019, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 66th, ROMBUNNO.9a‐PA2‐30, Japaneseゴム包埋した有機強誘電体薄膜の圧電特性とセンサ応用
- 2019, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 66th, ROMBUNNO.9a‐PA2‐28, Japanese新規有機半導体薄膜を用いた近赤外センサの開発
- 2018, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 65th, ROMBUNNO.20a‐P7‐35, Japaneseイオン液体マイクロ液滴内におけ+るAlq3の結晶成長メカニズム解明
- 2018, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 65th, ROMBUNNO.20a‐P7‐36, Japanese酸化剤融液上で気液界面重合したPEDOT膜の構造と電子物性評価
- 2018, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 79thチオフェンデンドリマーの巨大ゼーベック係数
- 2018, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 79thユニモルフカンチレバー型有機圧電薄膜の振動発電特性
- 2018, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 79th宇宙用材料を指向した液晶ポリマーへの原子状酸素照射
- 2018, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 79th含ホウ素有機半導体/C60界面形成による近赤外光センサ特性の向上
- 2018, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 79thTGS単結晶の分極場上に形成されたイオン液体膜の界面電気物性
- 2018, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 79th真空下熱重量測定によるイオン液体の蒸発ダイナミクス解析と蒸発開始温度予測
- 2018, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 79th, ROMBUNNO.21a‐PA2‐7, Japanese高速時間分解赤外分光法による微小液滴中でのポリ尿素合成反応その場観測と反応解析
- 2017, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 64th, ROMBUNNO.17a‐P4‐23, Japaneseビニル高分子との界面形成に基づくカーボンナノチューブのn型熱電変換特性
- 2017, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 64th, ROMBUNNO.15a‐P8‐7, Japaneseイオン液体マイクロ液滴内におけるAlq3の結晶成長
- 2017, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 78th, ROMBUNNO.5p‐PA2‐23, Japanese真空アニールによるカーボンナノチューブ薄膜からの非イオン性界面活性剤の蒸発ダイナミクス
- 公益社団法人 応用物理学会, 2017, 応用物理, 86(2) (2), 89 - 89, Japanese
- 2016, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 63rd, ROMBUNNO.21P-W351-11, Japanese有機強誘電体の分極を利用したカーボンナノチューブのゼーベック係数制御
- 2016, 高分子学会予稿集(CD-ROM), 65(1) (1), ROMBUNNO.3Pb088, Japanese反応条件による気相重合PEDOT薄膜の導電率制御と熱電特性
- 2016, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 77th, ROMBUNNO.16p‐P6‐20, Japanese真空蒸着法を利用したイオン液体中におけるAlq3結晶の作製と光学特性に関する研究
- 2016, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 77th, ROMBUNNO.14a‐P5‐15, Japaneseカーボンナノチューブ/有機強誘電体界面での自発的なダイポール配列によるn型ドーピングの可能性
- 2016, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 77th, ROMBUNNO.16a‐B5‐4, Japanese気相重合PEDOT薄膜の導電率制御と熱電特性評価
- 2015, 応用物理学会春季学術講演会講演予稿集(CD-ROM), 62nd, ROMBUNNO.11P-D4-2, Japaneseイオン液体添加による単層カーボンナノチューブ熱電変換特性の増強効果
- 2015, 応用物理学会秋季学術講演会講演予稿集(CD-ROM), 76th, ROMBUNNO.13P-PB8-15, Japanese単層カーボンナノチューブ熱電変換特性に対するイオン液体の添加効果
- 公益社団法人 応用物理学会, 2015, 応用物理, 84(11) (11), 953 - 953, Japanese
- Contributor, 第4章 第9節, 技術情報協会『熱、排熱利用に向けた 材料・熱変換技術の開発と活用事例』, May 2025熱電変換機能を備えたスーパーキャパシタの開発
- Contributor, 第4章 第1節, エヌ・ティー・エス『サーマルマネジメントの最新技術』, May 2025熱電発電応用を志向したカーボンナノチューブの電気化学ドーピング
- Contributor, 第3章 第1節, シーエムシー出版『カーボンナノチューブの研究開発と応用』, Feb. 2025錯体化学の概念を駆使したカーボンナノチューブのp型ドーピング
- Contributor, 技術情報協会『カーボンナノチューブ』, Jan. 2025錯体化学に立脚したp型カーボンナノチューブのドープ状態安定化技術
- 日本熱電学会誌 Vol. 19, No. 3, p 140, Apr. 2023カーボンナノチューブ熱電材料用の安定なn型ドーピング剤を発見
- Contributor, p46-p52, 日本工業出版社 クリーンエネルギー, Dec. 2022熱電発電素子を志向した空気中高温下で安定なn型カーボンナノチューブ
- Contributor, 第3編 環境発電の材料~IoT時代に向けて~ 第1章 振動発電 3. 圧電ポリマーの分子配向と多層膜化の効果, 株式会社エヌ・ティー・エス, Oct. 2021環境発電ハンドブック 第2版
- Joint work, 化学工業社 ケミカルエンジニヤリング, May 2019有機強誘電体薄膜を利用した圧電型振動発電
- Contributor, シーエムシー出版, Jul. 2017フレキシブル熱電変換材料の開発と応用
- JST 新技術説明会, Mar. 2025IoT用電源を志向した超軽量・長寿命有機熱電発電素子[Invited]
- 第72回応用物理学会春季学術講演会, Mar. 2025クロスリンク型有機超塩基カチオン含有電解質の合成とカーボンナノチューブ熱電材料の電気化学ドーピング[Invited]
- 第72回応用物理学会春季学術講演会, Mar. 2025カーボンナノチューブの安定性における錯体化学と イオン交換法による高耐熱化技術の開拓[Invited]
- nano tech 2025(国際ナノテクノロジー総合展・技術会議), Jan. 2025IoTセンサ用電源としてのレアメタルフリー熱電素子
- 電気化学会 キャパシタ技術委員会 2025年度第1回研究会, Jan. 2025IoTセンサ用電源を志向した熱電キャパシタの開発[Invited]
- 令和6年度産学官交流ミーティング, Dec. 2024カーボンナノチューブを利用したレアメタルフリーの軽量熱電発電素子[Invited]
- INNOVATION LEADERS SUMMIT 2024 (ILS2024), Dec. 2024IoTセンサ用電源としてのレアメタルフリー熱電素子
- 第84回応用物理学会秋季学術講演会(有機分子・バイオエレクトロニクス分科会奨励賞受賞記念講演), Sep. 2023有機超塩基ドーピングによる高耐熱n型カーボンナノチューブの開発[Invited]
- 第70回応用物理学会春季学術講演会(講演奨励賞受賞記念講演), Mar. 2023Stable n-type doping of carbon nanotubes using organic superbases[Invited]
- International Conference on Organic and Hybrid Thermoelectrics (ICOT2022), Oct. 2022Organic Superbases as n-Type Inducer of Carbon Nanotubes for Flexible Thermoelectric Generator
- 電気化学会溶融塩委員会 第198回定例委員会, Jan. 2019, Japanese, Domestic conferenceイオン液体の真空下蒸発過程における熱物性[Invited]Invited oral presentation
- The 2nd bilateral Kobe-Kiel Workshop, Sep. 2018, English, International conferenceHighly stable n-type carbon nanotubes via simple polymer doping for thermoelectric energy harvester[Invited]Invited oral presentation
- 2018 KJF International Conference on Organic Materials for Electronics and Photonics, Sep. 2018, English, International conferenceFormation of heterojunction nanorods with organic p-n semiconductorPoster presentation
- JST新技術説明会, Aug. 2018, Japanese, Domestic conference有機強誘電体薄膜による圧電型振動発電の開発[Invited]Invited oral presentation
- 一般社団法人有機エレクトロニクス材料研究会 第229回講演会 IoT関連の電源技術, Jun. 2018, Japanese, Domestic conference有機圧電性薄膜による振動発電[Invited]Invited oral presentation
- International Conference on Organic and Hybrid Thermoelectrics (ICOT 2018), Jan. 2018, English, International conferenceHighly Stable N-Type Carbon Nanotubes via Simple Vinyl Polymer Doping for Flexible Thermoelectric GeneratorsOral presentation
- The 17th International Conference on Micro and Nanotechnology for Power Generation and Energy Conversion Applications (Power MEMS 2017), Nov. 2017, English, International conferenceField-Effect and Chemical Charge-type Modulations of Carbon Nanotubes using Functional Polymers for Thermoelectric Energy HarvestersPoster presentation
- 2017 International Conference on Solid State Devices and Materials (SSDM 2017), Sep. 2017, English, International conferenceHigh Voltage Sensitivity of Organic Pyroelectric Sensors with Polarization Treatment during Eavaporation ProcessPoster presentation
- 9th International Conference on Molecular Electronics and Bioelectronics (M&BE9), Jun. 2017, English, International conferenceImproved light emitting properties from single-layered polyfluorene device by simple ionic liquid blendingPoster presentation
- 12th International Conference on Nano-Molecular Electronics (ICNME 2016), Dec. 2016, English, International conferenceField-effect modulation of Seebeck coefficient of carbon nanotube by ferroelectric dipoleOral presentation
- KJF International Conference on Organic Materials for electronics and photonics 2016, Sep. 2016, English, International conferencePolarity tuning of carbon nanotube by electric dipole of organic ferroelectrics for thermoelectric conversionPoster presentation
- The 18th International Conference on Crystal Growth and Epitaxy (ICCGE-18), Aug. 2016, English, International conferenceCrystal Growth of Organic Semiconductor in Ionic Liquid by Vacuum Vapor DepositionPoster presentation
- The 7th East Asia Symposium on Functional Dyes and Advanced Materials (EAS7), Sep. 2015, English, International conferenceEnhanced thermopower of single-wall carbon nanotube dispersed with ionic liquidPoster presentation
- 8th International Conference on Molecular Electronics and Bioelectronics (M&BE8), Jun. 2015, English, International conferenceSimultaneous increases in Seebeck coefficient and electrical conductivity of single wall carbon nanotube by addition of ionic liquidPoster presentation
- 11th International Conference on Nano-Molecular Electronics (ICNME 2014), Dec. 2014, English, International conferenceThermoelectric power of single wall carbon nanotube films blended with ionic liquidsPoster presentation
- 2013 JSAP-MRS Joint Symposia, Sep. 2013, English, International conferenceCrystal growth of rubrene in ionic liquids by vacuum vapor depositionPoster presentation
- The 17th International Conference on Micro and Nanotechnology for Power Generation and Energy Conversion Applications (Power MEMS 2017), English, International conferenceOrientation Dependence of Power Generation on Piezoelectric Energy Harvesting Using Stretched Ferroelectric Polymer FilmsPoster presentation
- 2018 KJF International Conference on Organic Materials for Electronics and Photonics, English, International conferenceVapor-Phase Polymerization of Poly(3,4-ethylenedioxythiophene) (PEDOT) at Interface between EDOT Vapor and Oxidant MeltPoster presentation
- 近畿化学協会Jan. 2023 - Present
- 高分子学会2021 - Present
- 日本化学会2021 - Present
- THE JAPAN SOCIETY OF APPLIED PHYSICS2013 - Present
■ Media Coverage
- 神戸大学大学院工学研究科・工学部 Research Topics, 09 Sep. 2024クロスリンク有機超塩基ドーピングによる安定なn型カーボンナノチューブの創出と熱電発電への応用
- 神戸大学大学院工学研究科・工学部, Research Topics, 13 Mar. 2024熱電変換機能を備えたスーパーキャパシタよる発電でIoTセンサの駆動を実証
- SPRINGER NATURE Materials Community, 04 Mar. 2024Behind the Paper Stable p-type carbon nanotubes: toward molecular electronics
- 神戸大学大学院工学研究科・工学部, Research Topics, 01 Mar. 2024錯体化学を駆使したカーボンナノチューブの安定なp型ドーピング
- 神戸大学×SDGs PROJECTS, 11 Jan. 2024ナノスケールの材料研究が拓くエナジーハーベスティング ―カーボンナノチューブと熱電発電
- 神戸大学大学院工学研究科・工学部, Research Topics, 05 Jan. 2024新規合成イオン液体によるカーボンナノチューブの安定なドーピングに成功
- Myself, 日本化学会第103春季年会記者会見, 10 Mar. 2023フレキシブル熱電素子の空気中高温下における安定動作を目指したカーボンナノチューブ用 新規n型ドーピング剤の探索
- Research at Kobe, 06 Jul. 2022空気中高温下でも安定動作する熱電発電素子用カーボンナノチューブのn型ドーピング物質を発見 ~有機超塩基の構造と機能~Internet
- Myself, SPRINGER NATURE Materials Community, 20 Jun. 2022Behind the Paper Stable n-type carbon nanotubes: toward molecular electronicsInternet