Xu-Ri Huang

Affiliations: 
2002- Jilin University, PR China 
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"Xu-Ri Huang"
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Publications

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Lyu L, Feng W, Yang S, et al. (2020) Exploring the Mechanism of the Palladium-Catalyzed 3-Butene-2-ol Amination Reaction: A DFT Study. Frontiers in Chemistry. 8: 48
Ku R, Yu G, Gao J, et al. (2020) Embedding tetrahedral 3d transition metal TM clusters into the cavity of two-dimensional graphdiyne to construct highly efficient and nonprecious electrocatalysts for hydrogen evolution reaction. Physical Chemistry Chemical Physics : Pccp
Yin R, Gao N, Zhang R, et al. (2020) Accurate potential energy surfaces for the excited state of CF2 molecule Chemical Physics. 538: 110906
Liu J, Yu G, Zhang R, et al. (2019) Theoretical predication of the high hydrogen evolution catalytic activity for the cubic and tetragonal SnP systems. Physical Chemistry Chemical Physics : Pccp
Wang T, Yu G, Liu J, et al. (2019) Theoretical design of a series of 2D TM-CN and TM-CN@graphene (TM = V, Nb and Ta) nanostructures with highly efficient catalytic activity for the hydrogen evolution reaction. Physical Chemistry Chemical Physics : Pccp
Weng H, Teng Y, Sheng Q, et al. (2019) Theoretical study of substituent effects on electride characteristics and the nonlinear optical properties of Li@calix[4]pyrrole Rsc Advances. 9: 37919-37925
Wang D, Wang D, Fu L, et al. (2019) Accurate potential surfaces for the first three lowest states of reaction O(3P) + C2(a3Πu) → CO(X1Σ) + C(1D) Chemical Physics. 517: 228-236
Zhang C, Yu G, Ku R, et al. (2019) Theoretical investigation on the high HER catalytic activity of 2D layered GeP3 nanomaterials and its further enhancement by applying the surface strain or coupling with graphene Applied Surface Science. 481: 272-280
Sheng Q, Weng H, Feng W, et al. (2019) Theoretical study of the photochemical isomerization process of perfluoroaryltetrahedrane to perfluoroarylcyclobutadiene mediated by 9,10-dicyanoanthracene Theoretical Chemistry Accounts. 138: 1-7
Yang L, Yu G, Ai X, et al. (2018) Efficient oxygen evolution electrocatalysis in acid by a perovskite with face-sharing IrO octahedral dimers. Nature Communications. 9: 5236
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