Y
Yi Cui
Researcher at Stanford University
Publications - 1109
Citations - 245406
Yi Cui is an academic researcher from Stanford University. The author has contributed to research in topics: Anode & Lithium. The author has an hindex of 220, co-authored 1015 publications receiving 199725 citations. Previous affiliations of Yi Cui include KAIST & University of California, Berkeley.
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Journal ArticleDOI
Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors.
Erfu Liu,Yajun Fu,Yaojia Wang,Yanqing Feng,Huimei Liu,Xiangang Wan,Wei Zhou,Baigeng Wang,Lubin Shao,Ching-Hwa Ho,Ying-Sheng Huang,Zhengyi Cao,Lai-Guo Wang,Aidong Li,Junwen Zeng,Fengqi Song,Xinran Wang,Yi Shi,Hongtao Yuan,Harold Y. Hwang,Harold Y. Hwang,Yi Cui,Yi Cui,Feng Miao,D. Y. Xing +24 more
TL;DR: In this paper, field effect transistors from single and few-layer rhenium disulfide were constructed and observed an anisotropic ratio of three to one along the two principle axes.
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Scalable synthesis of silicon-nanolayer-embedded graphite for high-energy lithium-ion batteries
Minseong Ko,Sujong Chae,Jiyoung Ma,Namhyung Kim,Hyun-Wook Lee,Hyun-Wook Lee,Yi Cui,Yi Cui,Jaephil Cho +8 more
TL;DR: In this paper, the feasibility of a next-generation hybrid anode using silicon-nanolayer-embedded graphite/carbon was demonstrated, and the authors reported scalable synthesis of silicon-nolayer embedding graphite electrodes that display cycling stability at the industrial electrode density.
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Strengthening effect of single-atomic-layer graphene in metal–graphene nanolayered composites
Youbin Kim,Jinsup Lee,Min Sun Yeom,Jae Won Shin,Hyungjun Kim,Yi Cui,Jeffrey W. Kysar,James Hone,Yousung Jung,Seokwoo Jeon,Seung Min Han +10 more
TL;DR: A new material design in the form of a nanolayered composite consisting of alternating layers of metal (copper or nickel) and monolayer graphene that has ultra-high strengths of 1.5 and 4.0 GPa indicates the effectiveness of graphene in blocking dislocation propagation across the metal-graphene interface.
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Two-dimensional layered transition metal disulphides for effective encapsulation of high-capacity lithium sulphide cathodes
Zhi Wei Seh,Jung Ho Yu,Weiyang Li,Po-Chun Hsu,Haotian Wang,Yongming Sun,Hong-Bin Yao,Qianfan Zhang,Yi Cui +8 more
TL;DR: This work reports, the encapsulation of Li2S cathodes using two-dimensional layered transition metal disulphides that possess a combination of high conductivity and strong binding withLi2S/Li2Sn species and demonstrates a high specific capacity and high areal capacity.
Journal ArticleDOI
Transition-metal Doped Edge Sites in Vertically Aligned MoS2 Catalysts for Enhanced Hydrogen Evolution
Haotian Wang,Charlie Tsai,Charlie Tsai,Desheng Kong,Karen Chan,Karen Chan,Frank Abild-Pedersen,Jens K. Nørskov,Jens K. Nørskov,Yi Cui,Yi Cui +10 more
TL;DR: In this paper, the authors used a computational descriptor-based approach to predict that by incorporating transition metal atoms (Fe, Co, Ni, or Cu) the S-edge site should also become HER active.