Session Details

[19psa]Poster 1

Thu. Jun 19, 2025 6:00 PM - 8:00 PM JST
Thu. Jun 19, 2025 9:00 AM - 11:00 AM UTC
Poster 1(International Exchange Hall III, Clock Tower Centennial Hall, 2F)

[19psa-01]Laser fabrication of hBN single photon emitters on silicon nitride waveguides

*Daiki Yamashita1, Masaki Yumoto1, Aiko Narazaki1, Makoto Okano1 (1. AIST (Japan))
Comment()

[19psa-02]Sorting of Single-Walled Carbon Nanotubes in the Tri-Surfactant System Using Aqueous Two-Phase Extraction

Cheng Li1, Min Lyu1, *Yan Li1,2 (1. Peking Univ. (China), 2. Institute of Carbon-Based Thin Film Electronics, Peking University, Shanxi (China))
Comment()

[19psa-03]Evaluation of cross-plane Seebeck coefficient of single-walled carbon nanotube thin films using AC heating

*Shigeki Saito1, Yoshihiko Kaneko1, Shojiro Asatori1, Satoshi Kusaba1, Kan Ueji1,2, Takashi Yagi2, Kazuhiro Yanagi1 (1. Tokyo Metropolitan University (Japan), 2. National Institute of Advanced Industrial Science and Technology (Japan))
Comment()

[19psa-04]The origin of the negative linear temperature dependence of resistance in nano-carbon materials

*Takahiro Morimoto1, Takumi Inaba1, Satoshi Yamazaki2, Kazufumi Kobashi1, Toshiya Okazaki1 (1. AIST (Japan), 2. ADMAT (Japan))
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[19psa-05]Visualization of exciton modulation in monolayer WSe2 under dynamic strain

*Yuta Takahashi1, Takumi Yamamoto1, Kazuki Maezawa1, Hajime Kumazaki1, Shinichi Watanabe1, Shun Fujii1 (1. Keio University (Japan))
Comment()

[19psa-06]Non-catalytic direct synthesis of graphene and h-BN on sapphire substrates

*Waka Miyata1, Hodaka Nishimura1, Keigo Otsuka1, Shigeo Maruyama1, Shohei Chiashi1 (1. Department of Mechanical Engineering, the University of Tokyo (Japan))
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[19psa-07]Development of In-Situ Electrical Observation System for Janus TMDs

*Dingkun Bi1,2, Tianyishan Sun1,2, Weizi Lu1,2, Hiroto Ogura1,2, Toshiaki Kato1,2 (1. Grad. School of Engineering, Tohoku Univ. (Japan), 2. WPI-AIMR, Tohoku Univ. (Japan))
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[19psa-08]Formation of hBN-Encapsulated Janus TMDs without Air Exposure

*Tianyishan Sun1,2, Dingkun Bi1,2, Hiroto Ogura1,2, Weizi Lu1,2, Toshiaki Kato1,2 (1. Grad. School of Engineering, Tohoku Univversity (Japan), 2. WPI-AIMR, Tohoku University (Japan))
Comment()

[19psa-09]Direct Fabrication of Graphene-Bridged Superconductor Junctions

*Zhuoqun Li1,2, Yuto Tsukidate1,2, Hiroto Ogura1,2, Toshiaki Kato1,2 (1. Grad. School of Engineering, Tohoku Univ. (Japan), 2. WPI-AIMR, Tohoku Univ. (Japan))
Comment()

[19psa-10]Boundary-Directed Epitaxy of Block Copolymers Guided by Graphene Nanoribbon Templates via Boundary-Directed Epitaxy

*Michael S. Arnold1 (1. University of Wisconsin-Madison (United States of America))
Comment()

[19psa-11]Electrical contact formation of CNT@BNNT heteronanotubes with metal electrodes through heat treatment

*Atsutaka Watanabe1, Makoto Shimizu1, Yoshinori Murase1, Taiki Inoue1, Yoshihiro Kobayashi1 (1. Osaka University (Japan))
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[19psa-12]Synthesis and Evaluation of High-Quality BNNT Growth on SWCNTs

*Xiyang Qiu1, Shuhui Wang1, Dmitry I Levshov2, Ming Liu1, Waka Miyata1, Bowen Zhang1, Yongjia Zheng1,3, Esko I Kauppinen4, Keigo Otsuka1, Vasili Perebeinos5, Shohei Chiashi1, Rong Xiang1,3, Shigeo Maruyama1,3,6 (1. The University of Tokyo (Japan), 2. University of Antwerp (Belgium), 3. Zhejiang University (China), 4. Aalto University (Finland), 5. University at Buffalo (United States of America), 6. Nagoya University (Japan))
Comment()

[19psa-13]Weighing Transport of CNT Conductors in Extreme Environments

*John Bulmer1,7, Chris Kovacs1,8, Thomas Bullard1,5, Charlie Ebbing1,6, Kadyn Tackett1, Sabrina Eddy1, Michael Susner1, Ganesh Pokharel2,4, Stephen Wilson2, Fedor Balakirev3, Oscar Valenzuela3, Timothy Haugan1 (1. Air Force Research Laboratory (United States of America), 2. University of California, Santa Barbara (United States of America), 3. National High Magnetic Field Laboratory, Los Alamos (United States of America), 4. University of West Georgia (United States of America), 5. Blue Halo (United States of America), 6. University of Dayton Research Institute (United States of America), 7. National Research Council (United States of America), 8. Scintillating Solutions LLC (United States of America))
Comment()

[19psa-14]SAW-guided Reconfigurable Memristor using 2D MoS2

*Sihyeok Kim1, Jang Woo Lee1, Hyeonseung Ryu2, Taehoon Kim1, Il Hyun Lee1, Soo Ho Choi1, Hyunho Lee2, Yeong Hwan Ahn2, Keekeun Lee2, Il Jeon1 (1. Sungkunkwan university (Korea), 2. Ajou university (Korea))
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[19psa-15]CNT-PP composite spacers for Reverse Osmosis Technology: A promising strategy to reduce positive organic fouling

*Armando David Martinez Iniesta1, Kenji Takeuchi1, Juan Fajardo-Diaz1, Hiroki Kitano3, Takahiro Kawakatsu4, Syogo Tejima5, Rodolfo Cruz-Silva1,6, Morinobu Endo1,2 (1. Institute for Aqua Regeneration, Shinshu University (Japan), 2. Global Aqua Innovation Center, Shinshu University (Japan), 3. Kitagawa Industries Co. (Japan), 4. Kurita Water Industries Ltd (Japan), 5. Research Organization for Information Science & Technology. (Japan), 6. Center for Applied Research in Chemistry, Plastic Transformation department (Mexico))
Comment()

[19psa-16]Efficient thermal defect healing of single-walled carbon nanotubes using a multiple-cycle approach

*Man Shen1, Taiki Inoue1, Yoshihiro Kobayashi1 (1. Osaka Univ. (Japan))
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[19psa-17]Photo-induced thermal effects on the bandgap of monolayer WSe2 integrated with ultrahigh-Q optical microcavities

*Hidetoshi Kanzawa1, Ryo Sugano1, Hajime Kumazaki1, Shun Fujii1 (1. Keio University (Japan))
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[19psa-18]Magnetic bulk photovoltaic effect in MoS2/CrPS4 artificial heterostructure device.

*Shuichi Asada1, Keisuke Shinokita1, Kazunari Matsuda1 (1. Kyoto University Institute of Energy Science (Japan))
Comment()

[19psa-19]Magnetic brightening of defect-localized single-photon emission in monolayer WSe2

*Yubei Xiang1, Keisuke Shinokita1, Kenji Watanabe2, Takashi Taniguchi3, Kazunari Matsuda1 (1. Institute of Advanced Energy, Kyoto University (Japan), 2. Research Center for Electronic and Optical Materials, NIMS (Japan), 3. Research Center for Materials Nanoarchitectonics, NIMS (Japan))
Comment()

[19psa-20]Study on Alignment Control Method of Carbon Nanotube Network Films and Their Electrical Properties

*Norika Fukuda1, Noriyuki Tonouchi1,2, Tomo Tanaka1,2, Toshie Miyamoto1,2, Megumi Kanaori1, Ryota Yuge1,2 (1. National Institute of Advanced Industrial Science and Technology (Japan), 2. NEC Corporation (Japan))
Comment()

[19psa-21]Catalytic rapid Joule heating synthesis of one-dimensional nanomaterials in seconds

*Jian Sheng1, Yifan Xu1, Zhen Han1, Xinrui Zhang1, Chi Xu1, Hai-Gang Lu2, Si-Dian Li2, Yan Li1 (1. Peking University (China), 2. Shanxi University (China))
Comment()

[19psa-22]Stacking structure of epitaxial growth graphene on reduced graphene oxide

*Satoshi Kanda1, Shunji Kurosu2, Fumitaka Sakamoto2, Tatsuro Hanajiri1,2, Yuta Nishina3, Ryota Negishi1,2 (1. Graduate School of Toyo Univ. (Japan), 2. BNC (Japan), 3. Okayama univ. (Japan))
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[19psa-23]Circular dichroism of Trion in enantiopure carbon nanotubes

*Hiroyuki Fujinami1, Koki Shiba1, Yuya Hosokawa, Yohei Yomogida2, Kazuhiro Yanagi1 (1. Department of Physics, Tokyo Metropolitan University (Japan), 2. Department of Chemical Sciences and Engineering, Hokkaido University (Japan))
Comment()

[19psa-24]Direct Growth of Graphene on Hexagonal Boron Nitride under a Catalyst-Free Condition

*Yunosuke Miyashita1, Hayato Watanabe2, Yusei Terada2, Aoi Sasanuma2, Ryosuke Takatsuka1, Keiichi Yanagisawa3, Tomofumi Ukai3, Shunji Kurosu3, Kenji Watanabe4, Takashi Taniguchi4, Tatsuro Hanajiri1,2,3, Toru Maekawa1,2,3, Ryota Negishi1,2,3 (1. Graduate School of Toyo Univ. (Japan), 2. Toyo Univ. (Japan), 3. BNC (Japan), 4. NIMS (Japan))
Comment()

[19psa-25]Doping-dependent valley polarization induced by Mott transition in WSe2/WS2 moiré superlattice

*Zhiwei Li1, Kenji Watanabe2, Takashi Taniguchi3, Kazunari Matsuda1 (1. Institute of Advanced Energy, Kyoto University, Uji, Kyoto (Japan), 2. Research Center for Electronic and Optical Materials, NIMS (Japan), 3. Research Center for Materials Nanoarchitectonics, NIMS (Japan))
Comment()

[19psa-26]Development of a Dual-Functional Device for Rapid Detection of NO2 Gas and Long-Term Cumulative Exposure Memory using Optimized Single-Walled Carbon Nanotubes

*Sihyeok Kim1, Ilya V. Novikov1, Peng Liu2, Jang Woo Lee1, Il Hyun Lee1, Artem Dudorov3, Dmitry V. Krasnikov3, Esko I. Kauppinen2, Albert G. Nasibulin3, Keekeun Lee4, Il Jeon1 (1. Sungkunkwan university (Korea), 2. Aalto university (Finland), 3. Skolkovo Institute of Science and Technology (Russia), 4. Ajou university (Korea))
Comment()

[19psa-27]Bending Effect on Thermoelectric performance of carbon nanotubes

*Akari Yoshida1, Takahiro Yamamoto1,2 (1. Tokyo University of Science, Department of Physics (Japan), 2. RIST, Tokyo University of Science (Japan))
Comment()

[19psa-28]POROUS SILICON-BASED NANOCOMPOSITES FOR EFFICIENT ELECTROCHEMICAL SENSORS

*Abdullah Saeed Jalalah1, Fahad Hussain Albaqami1 (1. Institute of Microelectronics and Semiconductor Technologies, King Abdulaziz City for Science and Technology, Saudi Arabia (Saudi Arabia))
Comment()

[19psa-29]Optical Absorption of Fermi Level-Cotrolled Multilayer Graphene:Effects of Stacking Structure and Spacer Insertion

*Shinnosuke Yoshida1, Takuo Mizuno1, Taiki Inoue1, Yuta Nishina2, Yoshihiro Kobayashi1 (1. Osaka Univ. (Japan), 2. Okayama Univ. (Japan))
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[19psa-30]EVALUATION OF MOLYBDENUM DISULFIDE PREPARED BY HEATING SULFUR-CAPPED MOLYBDENUM THIN FILMS

Kazushi Inoue1, Yuto Kimura1, Koki Nakane1, *Agus Subagyo1, Kazuhisa Sueoka1 (1. Graduate School of Information Science and Technology, Hokkaido University (Japan))
Comment()

[19psa-31]Detection of process-induced contaminants on carbon nanotubes using Raman spectroscopy

*Haruki Uchiyama1, Yudai Yoshikawa1, Hiromichi Kataura2, Yutaka Ohno1,3 (1. Nagoya Univ. (Japan), 2. AIST (Japan), 3. IMaSS, Nagoya Univ. (Japan))
Comment()

[19psa-32]Peptide-modified Carbon Nanotube Biosensor

*Asahi Nagamine1, Haruki Uchiyama1, Hiromichi Kataura2, Chishu Homma3, Yuhei Hayamizu3, Yutaka Ohno1,4 (1. Department of Electronics, Nagoya Univ. (Japan), 2. Nanomaterials Research Institute, National Institute of Advanced Industrial Science and Technology (Japan), 3. Tokyo Institute of Technology (Japan), 4. Institute of Material and Systems for Sustainability, Nagoya Univ. (Japan))
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[19psa-33]METAL OXIDE/METAL SELENIDE NANOSTRUCTURE ELECTRODE FOR SOLID-STATE SYMMETRIC SUPERCAPACITOR WITH EXCELLENT CAPACITANCE RETENTION

*Mohammed Jalalah1, Arpan Nayak2 (1. Promising Centre for Sensors and Electronic Devices (PCSED), Najran University, P.O. Box: 1988, Najran 11001, Saudi Arabia (Saudi Arabia), 2. Department of Energy Engineering, Konkuk University, 120 Neungdong-ro, Seoul-05029, Republic of Korea (Korea))
Comment()

[19psa-34]Electronic transport in CNT thin films and PBTTT films:Crossover between weak and strong localization

*Yuki Hiyama1, Hiroki Kaya1, Manaho Matsubara1, Hidetoshi Fukuyama2, Takahiro Yamamoto1 (1. Department of Physics, Tokyo University of Science (Japan), 2. RIST, Tokyo Univerity of Science (Japan))
Comment()

[19psa-35]Characterization of carbon nanotube thin-film transistors with inorganic polymer insulator

*Eito Kuromiya1, Haruki Uchiyama1, Masahiro Matsunaga2, Shunto Arai3, Hiromichi Kataura4, Yutaka Ohno1,2 (1. Department of Electronics, Nagoya University (Japan), 2. Institute of Material and Systems for Sustainability, Nagoya University (Japan), 3. National Institute for Materials Science (Japan), 4. National Institute of Advanced Industrial Science and Technology (Jersey))
Comment()

[19psa-36]Floating Catalyst Chemical Vapour Deposition (FCCVD)-Based CNT Electrodes for Metal Halide Perovskite Memristors in Neuromorphic Synaptic Applications

*Jang Woo Lee1, Yasir Shafi Mir1, Taehoon Kim1, Sihyeok Kim1, Ilya Novikov1, Sungjoo Lee1, Il Jeon1 (1. SKKU Advanced Institute of Nano-Tech. (Korea))
Comment()

[19psa-38]Structural changes in semiconducting CNT networks by coating conditions

*Toshie Miyamoto1,2, Tomo Tanaka1,2, Megumi Kanaori2, Norika Fukuda2, Shunta Doi1, Noriyuki Tonouchi1,2, Ryota Yuge1,2 (1. NEC Corporation (Japan), 2. National Institute of Advanced Industrial Science and Technology (Japan))
Comment()

[19psa-39]Bayesian optimization for the synthesis of small-diameter single-walled carbon nanotubes using the eDIPS method

*Taizo Shibuya1,2, Noriyuki Tonouchi1,2, Yuta Nishiwaki3, Satoru Hashimoto3, Takeshi Hashimoto3, Takeshi Saito2, Ryota Yuge1,2 (1. NEC Corporation (Japan), 2. AIST (Japan), 3. Meijo Nano Carbon Co., Ltd (Japan))
Comment()

[19psa-40]POROUS SILICON-BASED NANOCOMPOSITES FOR EFFICIENT ELECTROCHEMICAL SENSORS

*Fahad Hussain Albaqami1, Abdullah Saeed Jalalah1 (1. Institute of Microelectronics and Semiconductor Technologies, King Abdulaziz City for Science and Technology, Riyadh, Saudi Arabia (Saudi Arabia))
Comment()

[19psa-41]Optical Properties of Interlayer Excitons in TMD-based vdw Stacks

*Sudhanshu Kumar Nayak1,2, Hiroo Suzuki3, Daichi Kozawa2, Sai Santosh Kumar Raavi1, Ryo Kitaura2 (1. Ultrafast Photophysics and Photonics Laboratory, Department of Physics, Indian Institute of Technology Hyderabad, Kandi, Telangana, India (India), 2. Research Center for Materials Nanoarchitectonics (MANA)National Institute for Materials Science (NIMS)Tsukuba 305-0044, Japan (Japan), 3. Life, Natural Science and Technology, Institute of Academic and Research, Okayama University (Japan) (Japan))
Comment()

[19psa-42]Carbon Nanotube Electrode-Based Reconfigurable Metal Halide Perovskite Memristors for Reservoir Computing Applications

*Jang Woo Lee1, Taehoon Kim1, Naoumi Hasumi2, Ryosuke Nakajima2, Sihyeok Kim1, Sungjoo Lee1, Suguru Noda2, Il Jeon1 (1. SKKU Advanced Institute of Nano-Tech. (Korea), 2. Waseda University (Japan))
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[19psa-43]Collapsed carbon nanotubes: Raman signal and flattening control

*Emmanuel Picheau1, Daiming Tang1 (1. NIMS (Japan))
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[19psa-44]Exploration for the Optimized Double-Layer Catalyst Support Structure for the Synthesis of Vertically Aligned Carbon Nanotube Arrays

*Shunsuke Sakurai1, Takashi Tsuji1, Don N Futaba1 (1. National Institute of Advanced Industrial Science and Technology (Japan))
Comment()

[19psa-46]Activated Diffusion of 1D J-Aggregates in Boron Nitride Nanotubes by Curvature Patterning

Jean-Baptiste Marceau1, Juliette Le Balle1,4, Duc-Minh Ta2, Alberto Aguilar2, Annick Loiseau4, Richard Martel5, Pierre Bon2, Raphael Voituriez3, Gaelle Recher1, *Etienne Gaufrès1 (1. CNRS-University of Bordeaux (France), 2. CNRS-University of Limoges (France), 3. CNRS-University of Sorbonne (France), 4. CNRS-Onera (France), 5. University of Montreal (Canada))
Comment()

[19psa-47]Flexible electronics based on conjugated polymers, oxides, and carbon nanostructures

*Lucimara Stolz Roman1 (1. Universidade Federal do Paraná (Brazil))
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[19psa-48]Graphene nano-electromechanical mass sensor with high resolution at room temperature

*SangWook Lee1, Dong-Hoon Shin2,3, Sunghyun Kim1, Peter Steeneken3, Chirlmin Joo3 (1. Ewha Womans University (Korea), 2. Korea University (Korea), 3. Delft University of Techology (Netherlands))
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[19psa-50]Upcycling Waste Plastics into Carbon Nanotube Wirings and Synaptic Devices for Physical Reservoir Computing

*Takashi Ikuno1, Kotaro Takanashi1 (1. Tokyo University of Science (Japan))
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[19psa-51]CNTFET-Metal Contact Investigations via Voltage Controlled Material Deposition

*Martin Hartmann1,2, Martin Ernst1,2, Simon Böttger1,2, Sascha Hermann1,2 (1. Center for Microtechnologies, Chemnitz University of Technology (Germany), 2. Center for Materials Architecture and Integration of Nanomembranes, Chemnitz University of Technology (Germany))
Comment()

[19psa-52]AM I TOO FAT? CNT ASKED. DIFFERENCES IN MORPHOLOGY OF CARBON NANOTUBES FOR TRIBOLOGICAL APPLICATION

*Szymon Tomasz Ruczka1,2,3, Adam Marek1,4, Artur Terzyk5, Magdalena Skrzypek6, Łukasz Wojciechowski6, Sławomir Boncel1,2,3 (1. NanoCarbon Group; Department of Organic Chemistry, Bioorganic Chemistry and Biotechnology, Silesian University of Technology, Bolesława Krzywoustego 4, 44-100 Gliwice, Poland (Poland), 2. Centre for Organic and Nanohybrid Electronics (CONE), Silesian University of Technology, Stanisława Konarskiego 22B, 44-100 Gliwice, Poland (Poland), 3. NanoCarbonGroup.com Ltd., Ks. Marcina Strzody 7, 44-100 Gliwice, Poland (Poland), 4. Department of Chemical Organic Technology and Petrochemistry, Silesian University of Technology, Bolesława Krzywoustego 4, 44-100 Gliwice, Poland (Poland), 5. Department of Materials Chemistry, Adsorption and Catalysis, Nicolaus Copernicus University in Toruń, Gagarina 7, 87-100 Toruń, Poland (Poland), 6. Institute of Construction Machines and Automotive Vehicles, Poznań University of Technology, Piotrowo 3, 60-959 Poznań (Poland))
Comment()

[19psa-53]FROM DOTS TO TUBES – THE REVERSE SCENARIO
OF BOTTOM-UP CATALYST-FREE SYNTHESIS OF N-DOPED CNTs

*Slawomir Boncel1, Anna Kolanowska1,2 (1. Silesian University of Technology (Poland), 2. University of Silesia (Poland))
Comment()