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論文・分野から探す

機構に所属する研究者の発表した論文を、タイトル・抄録・分野などから検索することができます。論文の分野はクラリベイト社のESI分類を参考に分類しています(Materials Science, Physics, Chemistry, Engineering, Biologyなど)。

最終更新日: 2024年03月02日

    14件の論文が見つかりました。論文は出版年月日順に表示しています。(ヘルプ)
  • Wendong Wang, Nicholas Clark, Matthew Hamer, Amy Carl, Endre Tovari, Sam Sullivan-Allsop, Evan Tillotson, Yunze Gao, Hugo de Latour, Francisco Selles, James Howarth, Eli G. Castanon, Mingwei Zhou, Haoyu Bai, Xiao Li, Astrid Weston, Kenji Watanabe, Takashi Taniguchi, Cecilia Mattevi, Thomas H. Bointon, Paul V. Wiper, Andrew J. Strudwick, Leonid A. Ponomarenko, Andrey V. Kretinin, Sarah J. Haigh, Alex Summerfield, Roman Gorbachev. Clean assembly of van der Waals heterostructures using silicon nitride membranes. Nature Electronics. 6 [12] (2023) 981-990 10.1038/s41928-023-01075-y Open Access
  • Meng-Yu Tsai, Chia-Tse Huang, Che-Yi Lin, Mu-Pai Lee, Feng-Shou Yang, Mengjiao Li, Yuan-Ming Chang, Kenji Watanabe, Takashi Taniguchi, Ching-Hwa Ho, Wen-Wei Wu, Mahito Yamamoto, Jiunn-Lin Wu, Po-Wen Chiu, Yen-Fu Lin. A reconfigurable transistor and memory based on a two-dimensional heterostructure and photoinduced trapping. Nature Electronics. 6 [10] (2023) 755-764 10.1038/s41928-023-01034-7
  • Guanghui Cheng, Mohammad Mushfiqur Rahman, Andres Llacsahuanga Allcca, Avinash Rustagi, Xingtao Liu, Lina Liu, Lei Fu, Yanglin Zhu, Zhiqiang Mao, Kenji Watanabe, Takashi Taniguchi, Pramey Upadhyaya, Yong P. Chen. Electrically tunable moiré magnetism in twisted double bilayers of chromium triiodide. Nature Electronics. 6 [6] (2023) 434-442 10.1038/s41928-023-00978-0 Open Access
  • Yang Liu, Song Liu, Zhiying Wang, Baichang Li, Kenji Watanabe, Takashi Taniguchi, Won Jong Yoo, James Hone. Low-resistance metal contacts to encapsulated semiconductor monolayers with long transfer length. Nature Electronics. 5 [9] (2022) 579-585 10.1038/s41928-022-00808-9
  • Yosuke Sasama, Taisuke Kageura, Masataka Imura, Kenji Watanabe, Takashi Taniguchi, Takashi Uchihashi, Yamaguchi Takahide. High-mobility p-channel wide-bandgap transistors based on hydrogen-terminated diamond/hexagonal boron nitride heterostructures. Nature Electronics. 5 [1] (2022) 37-44 10.1038/s41928-021-00689-4 Open Access
  • Min Sup Choi, Ankur Nipane, Brian S. Y. Kim, Mark E. Ziffer, Ipshita Datta, Abhinandan Borah, Younghun Jung, Bumho Kim, Daniel Rhodes, Apoorv Jindal, Zachary A. Lamport, Myeongjin Lee, Amirali Zangiabadi, Maya N. Nair, Takashi Taniguchi, Kenji Watanabe, Ioannis Kymissis, Abhay N. Pasupathy, Michal Lipson, Xiaoyang Zhu, Won Jong Yoo, James Hone, James T. Teherani. High carrier mobility in graphene doped using a monolayer of tungsten oxyselenide. Nature Electronics. 4 [10] (2021) 731-739 10.1038/s41928-021-00657-y Open Access
  • Yu-Shien Shiah, Kihyung Sim, Yuhao Shi, Katsumi Abe, Shigenori Ueda, Masato Sasase, Junghwan Kim, Hideo Hosono. Mobility–stability trade-off in oxide thin-film transistors. Nature Electronics. 4 [11] (2021) 800-807 10.1038/s41928-021-00671-0
  • Theresia Knobloch, Yury Yu. Illarionov, Fabian Ducry, Christian Schleich, Stefan Wachter, Kenji Watanabe, Takashi Taniguchi, Thomas Mueller, Michael Waltl, Mario Lanza, Mikhail I. Vexler, Mathieu Luisier, Tibor Grasser. The performance limits of hexagonal boron nitride as an insulator for scaled CMOS devices based on two-dimensional materials. Nature Electronics. 4 [2] (2021) 98-108 10.1038/s41928-020-00529-x Open Access
  • Chen Pan, Chen-Yu Wang, Shi-Jun Liang, Yu Wang, Tianjun Cao, Pengfei Wang, Cong Wang, Shuang Wang, Bin Cheng, Anyuan Gao, Erfu Liu, Kenji Watanabe, Takashi Taniguchi, Feng Miao. Reconfigurable logic and neuromorphic circuits based on electrically tunable two-dimensional homojunctions. Nature Electronics. 3 [7] (2020) 383-390 10.1038/s41928-020-0433-9
  • Hsin-Zon Tsai, Johannes Lischner, Arash A. Omrani, Franklin Liou, Andrew S. Aikawa, Christoph Karrasch, Sebastian Wickenburg, Alexander Riss, Kyler C. Natividad, Jin Chen, Won-Woo Choi, Kenji Watanabe, Takashi Taniguchi, Chenliang Su, Steven G. Louie, Alex Zettl, Jiong Lu, Michael F. Crommie. A molecular shift register made using tunable charge patterns in one-dimensional molecular arrays on graphene. Nature Electronics. 3 [10] (2020) 598-603 10.1038/s41928-020-00479-4 Open Access
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