Z
Zhaoping Liu
Researcher at Chinese Academy of Sciences
Publications - 401
Citations - 21210
Zhaoping Liu is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Graphene & Anode. The author has an hindex of 66, co-authored 354 publications receiving 16659 citations. Previous affiliations of Zhaoping Liu include National Institute for Materials Science & University of Science and Technology of China.
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Flexible Electrochromic V2O5 Thin Films with Ultrahigh Coloration Efficiency on Graphene Electrodes
Jiao Wu,Jiao Wu,Dong Qiu,Hongliang Zhang,Hongtao Cao,Wei Wang,Zhaoping Liu,Tian Tian,Lingyan Liang,Junhua Gao,Fei Zhuge +10 more
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Oriented Arrangement: The Origin of Versatility for Porous Graphene Materials
TL;DR: Bulk porous graphene materials with oriented pore structure and arrangement of graphene sheets are prepared by marrying electrolyte-assisted self-assembly and shear-force-induced alignment of graphene oxide sheets, and the super elasticity and anisotropic mechanical, electrical, and thermal properties induced by this unique structure are systematically investigated.
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Regeneration of degraded Li-rich layered oxide materials through heat treatment-induced transition metal reordering
Yixuan Li,Mateusz Zuba,Shuang Bai,Zachary W. Lebens-Higgins,Bao Qiu,Susie Park,Zhaoping Liu,Minghao Zhang,Louis F. J. Piper,Ying Shirley Meng +9 more
TL;DR: In this paper, a detailed mechanism study of the voltage and structure recovery of cycled LRLO cathode was conducted through various analytical tools, and an ambient-air relithiation using Li+ molten salt was also conducted along with the heat treatment to the cycled Li-rich layered oxides (LRLO) cathode and lead to a material regeneration in both voltage and capacity.
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The Ragone plots guided sizing of hybrid storage system for taming the wind power
TL;DR: In this article, the authors proposed a sizing strategy for determining the capacity allocation between the high energy density sources and high power density sources, which respectively considers the power and energy storage characteristics of EES integrally, and reflects the economic need of renewable energy integration.
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Low-temperature synthesis and growth mechanism of uniform nanorods of bismuth sulfide
TL;DR: In this article, a low-temperature solution-phase method has been demonstrated for the synthesis of uniform nanorods of Bi{sub 2}S{sub 3} with diameter of 18nm and length of below 200nm.