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Huijun Liu

Affiliations: 
2003 Wuhan University, Wuhan Shi, Hubei Sheng, China 
Website:
http://physics.whu.edu.cn/en/?q=node/20
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"Huijun Liu"
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Sheng C, Fan D, Liu H. (2020) High thermoelectric performance can be achieved in two-dimensional (PbTe)2 layer Physics Letters A. 384: 126044
Zhou Z, Fan D, Liu H. (2019) Realizing high thermoelectric performance with comparable p- and n-type figure-of-merits in a graphene/h-BN superlattice monolayer. Physical Chemistry Chemical Physics : Pccp
Zhang J, Liu H, Gao Y, et al. (2019) The sp character of new two-dimensional AsB with tunable electronic properties predicted by theoretical studies. Physical Chemistry Chemical Physics : Pccp
Zhou Z, Liu H, Fan D, et al. (2018) High Thermoelectric Performance Originating from the Grooved Bands in the ZrSe3 Monolayer. Acs Applied Materials & Interfaces
Liang J, Liu H, Fan D, et al. (2017) Large-scale calculations of thermoelectric transport coefficients: a case study of γ-graphyne with point defects. Journal of Physics. Condensed Matter : An Institute of Physics Journal. 29: 455901
Zhang J, Liu XL, Wen Y, et al. (2017) Titanium trisulfide (TiS3) monolayer as a potential thermoelectric material: first-principles based Boltzmann transport study. Acs Applied Materials & Interfaces
Tang X, Fan D, Peng K, et al. (2017) Dopant Induced Impurity Bands and Carrier Concentration Control for Thermoelectric Enhancement in p-Type Cr2Ge2Te6 Chemistry of Materials. 29: 7401-7407
He D, Zhao W, Mu X, et al. (2017) Enhanced thermoelectric performance of heavy-fermion YbAl3 via multi-scale microstructures Journal of Alloys and Compounds. 725: 1297-1303
Liang J, Fan D, Jiang P, et al. (2017) First-principles study of the thermoelectric properties of intermetallic compound YbAl3 Intermetallics. 87: 27-30
Zhang Q, Cheng L, Liu W, et al. (2014) Low effective mass and carrier concentration optimization for high performance p-type Mg2(1-x)Li2xSi0.3Sn0.7 solid solutions. Physical Chemistry Chemical Physics : Pccp. 16: 23576-83
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