Y
Ying Fang
Researcher at Chinese Academy of Sciences
Publications - 115
Citations - 12382
Ying Fang is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Graphene & Graphene nanoribbons. The author has an hindex of 39, co-authored 108 publications receiving 10969 citations. Previous affiliations of Ying Fang include Delft University of Technology & University of Science and Technology of China.
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Coherent Single Charge Transport in Molecular-Scale Silicon Nanowire Transistors
TL;DR: In this article, low-temperature electrical transport studies of molecule-scale silicon nanowires have been conducted, showing that the Coulomb blockade oscillations characteristic of charge addition to a single nanostructure with length scales up to at least 400 nm.
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An Electrically Modulated Single-Color/Dual-Color Imaging Photodetector.
Lin Li,Lin Li,Hongyu Chen,Zhimin Fang,X. J. Meng,Chuantian Zuo,Menglan Lv,Yongzhi Tian,Ying Fang,Zuo Xiao,Chongxin Shan,Zhengguo Xiao,Zhiwen Jin,Guozhen Shen,Liang Shen,Liming Ding +15 more
TL;DR: An electrically modulated single-/dual-color imaging photodetector with fast response speed is developed based on a small molecule (COi 8DFIC)/perovskite (CH3 NH3 PbBr3 ) hybrid film.
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Elastocapillary self-assembled neurotassels for stable neural activity recordings
Shouliang Guan,Shouliang Guan,Jinfen Wang,Jinfen Wang,Xiang-Kui Gu,Y. Zhao,R. Hou,Huizhong Fan,Liang Zou,Liang Zou,Lei Gao,Lei Gao,Mingde Du,Mingde Du,Chengyu Li,Ying Fang,Ying Fang +16 more
TL;DR: A Neurotassel consisting of an array of flexible and high–aspect ratio microelectrode filaments elicited minimal neuronal cell loss in the brain and enabled stable activity recordings of the same population of neurons in mice learning to perform a task.
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CVD Growth of Large Area Smooth-edged Graphene Nanomesh by Nanosphere Lithography
Min Wang,Lei Fu,Lin Gan,Chaohua Zhang,Mark H. Rümmeli,Alicja Bachmatiuk,Kai Huang,Ying Fang,Zhongfan Liu +8 more
TL;DR: This work presents a novel yet simple direct-growth strategy to yield graphene nanomesh (GNM) on a patterned Cu foil via nanosphere lithography, and shows that the as-grown GNM has significantly smoother edges than post-growth etched GNM.
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Quasi-freestanding monolayer heterostructure of graphene and hexagonal boron nitride on Ir(111) with a zigzag boundary.
Mengxi Liu,Yuanchang Li,Pengcheng Chen,Jingyu Sun,Donglin Ma,Qiucheng Li,Teng Gao,Yabo Gao,Zhihai Cheng,Xiaohui Qiu,Ying Fang,Yanfeng Zhang,Zhongfan Liu +12 more
TL;DR: The present work offers a deep insight into the h-BN-graphene boundary structures both geometrically and electronically together with the effect of adlayer-substrate coupling.