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Yanping Liu
Researcher at Central South University
Publications - 56
Citations - 1245
Yanping Liu is an academic researcher from Central South University. The author has contributed to research in topics: Exciton & Graphene. The author has an hindex of 15, co-authored 36 publications receiving 667 citations. Previous affiliations of Yanping Liu include University of California, Berkeley & Nanyang Technological University.
Papers
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Recent Progress in the Fabrication, Properties, and Devices of Heterostructures Based on 2D Materials
TL;DR: A summary of the latest progresses in fabrications, properties, and applications of different types of 2D heterostructures is presented, followed by the discussions on present challenges and perspectives of further investigations.
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Valleytronics in transition metal dichalcogenides materials
TL;DR: In this paper, the fundamental properties and tuning strategies (optical, electrical, magnetic and mechanical tuning) of valley degree of freedom, summarize the recent progress of TMD-based valleytronic devices, and highlight the conclusion on the further investigations in valleytronics.
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Temperature dependence of the electrical transport properties in few-layer graphene interconnects.
TL;DR: By combining the Coulomb and short-range scattering theory, an analytical model is derived to explain theTemperature dependence of electrical resistance behaviours in tri- and four-layer graphene interconnects which agrees well with the experimental results.
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Spintronics in Two-Dimensional Materials
TL;DR: 2D materials and related heterostructures are focused on to systematically summarize the progress of the spin injection, transport, manipulation, and application for information storage and processing.
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Giant nonlinear optical activity in two-dimensional palladium diselenide
Juan Yu,Juan Yu,Xiaofei Kuang,Junzi Li,Jiahong Zhong,Cheng Zeng,Lingkai Cao,Zongwen Liu,Zhouxiaosong Zeng,Ziyu Luo,Tingchao He,Anlian Pan,Yanping Liu +12 more
TL;DR: In this paper, the optical nonlinearity of palladium diselenide (PdSe2) was investigated and the layer dependent two photon absorption efficiency and the saturable absorption modulation depth were determined.