• 尊龙凯时·(中国)人生就是搏!

    人才队伍

    姓    名:
    张健
    性    别:
    职    务:
    职    称:
    研究员
    通讯地址:
    北京市海淀区中关村北一条11号
    邮政编码:
    100190
    电子邮件:
    zhangjian@nanoctr.cn

     简历:
     

    张健,尊龙凯时 - 人生就是搏!项目研究员,博士生导师。2013年毕业于山东大学材料科学与工程学院;2018年于中国科学院大学(尊龙凯时 - 人生就是搏!)获凝聚态物理博士学位,导师为孙连峰研究员;2018-2022年在瑞士联邦材料科学与技术实验室(Empa)进行博士后研究,合作教授为Michel Calame教授,博后期间获得欧盟“玛丽·居里学者”的人才计划,并在2022年晋升为Empa研究员(Scientist),开展独立项目研究;2024年加入德国马克思普朗克微结构物理研究所,担任纳米电子学课题组长,合作教授为冯新亮教授;并将在2025年2月入职尊龙凯时 - 人生就是搏!纳米加工室。张健研究员长期致力于新结构纳米器件的加工和输运特性研究,在原子精度量子器件、转角石墨烯强关联体系以及纳米器件高通量制造等方向取得了一系列成果。近年来,在Nature Electronics, Nature Materials, Advanced Materials, ACS Nano, Nano Letters, Advanced Functional Materials等国际重要学术期刊上发表SCI论文近40篇。



     研究领域:
     

    1.     原子精度量子器件: 基于极限加工技术,探索原子尺度下的新型量子效应。

    2.     新型单分子电子学:探索分子纳米带的器件加工和输运特性。

    3.     新型一维/二维莫尔超晶格电子学:探索新结构下的关联电子态及其调控机制。

    4.     纳米器件高通量制造:交叉微纳加工、机械自动化以及人工智能等。



     社会任职:
     

     获奖及荣誉:
     

     代表论著:
     

    [1]    M. Perrin, A. Jayaraj, B. Ghawri, K. Watanabe, T. Taniguchi, D. Passerone, M. Calame*, J. Zhang*, Electric field tunable bandgap in twisted double trilayer graphene. npj 2D Mater. Appl. 2024, 8, 14.

    [2]    J. Zhang*, G.B. Barin, R. Furrer, K. Mullen, P. Ruffieux, R. Fasel, M. Calame*, M. Perrin*, Determining the number of graphene nanoribbons in dual-gate field-effect transistors. Nano Lett. 2023, 23, 8474-8480.

    [3]    L. Wang, S. Papadopoulos, F. Iyikanat, J. Zhang, J. Huang, K. Watanabe, T. Taniguchi, M. Calame, M. L Perrin, F. Abajo, L. Novotny, Exciton-assisted electron tunneling in van der Waals heterostructures. Nat. Mater. 2023, 22, 1094-1099.

    [4]    J. Zhang*, L. Qian, G.B. Barin, A. Daaoub, P. Chen, K. Mullen, S. Sangtarash, P. Ruffieux, R. Fasel, H. Sadeghi, J. Zhang, M. Calame*, M. Perrin*, Contacting individual graphene nanoribbons using carbon nanotube electrodes. Nat. Electron. 2023, 6, 572-581.

    [5]    J. Zhang* & M. Perrin*, Quantum transport through a single atomically precise graphene nanoribbon. Nat. Electron. 2023, 6, 553-554.

    [6]    W. Huang, O. Braun, G.B. Barin, G. Gandus, M. Stiefel, A. Olziersky, K. Mullen, M. Luisier, D. Passerone, P. Ruffieux, C. Schonenberger, K. Watanabe, T. Taniguchi, R. Fasel, J. Zhang*, M. Calame*, M. Perrin*, Edge Contacts to Atomically Precise Graphene Nanoribbons. ACS Nano 2023, 17. 18706-18715.

    [7]    J. Zhang*, O. Braun, G.B. Barin, S. Sangtarash, J. Overbeck, R. Darawish, M. Stiefel, R. Furrer, A. Olziersky, K. Mullen, I. Shorubalko, A. Daaoub, P. Ruffieux, R. Fasel, H. Sadeghi*, M. Perrin*, M. Calame*, Tunable quantum dots from atomically precise graphene nanoribbons using a multi-gate architecture. Adv. Electron. Mater. 2023, 9, 2201204.

    [8]    J. Zhang, M. L. Perrin, J. Overbeck, L. Barba, A. Agal, B. Grassy, R. Brönnimann, S. Jung, M. Haluska, C. I. Roman, C. Hierold, M. Jaggi, M. Calame, High-speed identification of suspended carbon nanotubes using Raman spectroscopy and deep learning. Microsystems & Nanoengineering 2022, 8, 9.

    [9]    Z. Peng, Y. Deng, H. Wie, K. Peng, H. Liu, Z. Wang, W. Guo, J. Zhang*, Y. Li*, Z. Liu*, L. Sun*, Room-temperature nonvolatile molecular memory based on partially unzipped nanotube. Adv. Funct. Mater. 2021, 2107224.

    [10] J. Zhang, Y. Deng, X. Hu, X. Chi, J. Liu, W. Chu, L. Sun, Molecular magnets based on graphene and carbon nanotubes. Adv. Mater. 2019, 31, 1804917.

    [11] J. Zhang, Y. Deng, X. Hu, J. P. Nshimiyimana, S. Liu, X. Chi, P. Wu, F. Dong, P. Chen, W. Chu, H. Zhou, L. Sun, Nanogap-engineerable electromechanical system for ultralow power memory. Adv. Sci. 2018, 5, 1700588.

    [12] J. Zhang, S. Liu, J. P. Nshimiyimana, Y. Deng, G. Hou, X. Chi, X. Hu, Z. Zhang, P. Wu, G. Wang, W. Chu, L. Sun, Wafer-scale fabrication of suspended single-walled carbon nanotube arrays by silver liquid dynamics. Small 2017, 13, 1701218.



     承担科研项目情况: