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Yongji Gong
Researcher at Beihang University
Publications - 79
Citations - 4775
Yongji Gong is an academic researcher from Beihang University. The author has contributed to research in topics: Lithium & Monolayer. The author has an hindex of 26, co-authored 72 publications receiving 2484 citations. Previous affiliations of Yongji Gong include Stanford University.
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Journal ArticleDOI
Ultrafast Zn2+ Intercalation and Deintercalation in Vanadium Dioxide.
TL;DR: A novel intercalation pseudocapacitance behavior and ultrafast kinetics of Zn2+ into the unique tunnels of VO2 (B) nanofibers in aqueous electrolyte are demonstrated via in situ X-ray diffraction and various electrochemical measurements.
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Spatially controlled doping of two-dimensional SnS 2 through intercalation for electronics
Yongji Gong,Yongji Gong,Hongtao Yuan,Hongtao Yuan,Hongtao Yuan,Chun-Lan Wu,Peizhe Tang,Shize Yang,Ankun Yang,Guodong Li,Bofei Liu,Jorik van de Groep,Mark L. Brongersma,Matthew F. Chisholm,Shou-Cheng Zhang,Shou-Cheng Zhang,Wu Zhou,Wu Zhou,Yi Cui,Yi Cui +19 more
TL;DR: A solvent-based intercalation method to achieve p-type, n-type and degenerately doped semiconductors in the same parent material at the atomically thin limit is demonstrated and can open a new avenue connecting the previously disparate worlds of integrated circuits andatomically thin materials.
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Vertically Aligned and Continuous Nanoscale Ceramic–Polymer Interfaces in Composite Solid Polymer Electrolytes for Enhanced Ionic Conductivity
Xiaokun Zhang,Xiaokun Zhang,Jin Xie,Feifei Shi,Dingchang Lin,Yayuan Liu,Wei Liu,Allen Pei,Yongji Gong,Hongxia Wang,Kai Liu,Yong Xiang,Yi Cui,Yi Cui +13 more
TL;DR: The vertically aligned interfacial structure in the composite electrolytes enables the viable application of the composite solid electrolyte with superior ionic conductivity and high hardness, allowing Li-Li cells to be cycled at a small polarization without Li dendrite penetration.
Journal ArticleDOI
Stitching h-BN by atomic layer deposition of LiF as a stable interface for lithium metal anode.
Jin Xie,Lei Liao,Yongji Gong,Yanbin Li,Feifei Shi,Allen Pei,Jie Sun,Rufan Zhang,Biao Kong,Ram Subbaraman,Jake Christensen,Yi Cui,Yi Cui +12 more
TL;DR: The chemically and mechanically stable hybrid LiF/h-BN film successfully suppresses lithium dendrite formation during both the initial electrochemical deposition onto a copper foil and the subsequent cycling.