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Ying Dai
Researcher at Shandong University
Publications - 827
Citations - 41002
Ying Dai is an academic researcher from Shandong University. The author has contributed to research in topics: Photocatalysis & Band gap. The author has an hindex of 87, co-authored 706 publications receiving 31538 citations. Previous affiliations of Ying Dai include North Carolina State University & Northern Illinois University.
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An efficient visible-light photocatalyst made from a nonpolar layered semiconductor by grafting electron-withdrawing organic molecules to its surface.
Benyan Xu,Yang An,Yuanyuan Liu,Baibiao Huang,Xiaoyan Qin,Xiaoyang Zhang,Ying Dai,Myung-Hwan Whangbo +7 more
TL;DR: An in-depth study finds a correlation between the apparent rate constant (kapp) and the Hammett constants σpara of the 4-substituted groups.
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Semimetallic Si3C as a high capacity anode material for advanced lithium ion batteries
TL;DR: In this article, the potential of Si3C as an anode material, which consists of light silicon and carbon atoms and is characterized by a Dirac cone, was evaluated and the results revealed that the energy barrier for Li diffusion on Si3c is only 0.46
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Electron Spin Polarization-Enhanced Photoinduced Charge Separation in Ferromagnetic ZnFe2O4
Wenqiang Gao,Rui Peng,Yuying Yang,Xiaolei Zhao,Chao Cui,Xiaowen Su,Wei Qin,Ying Dai,Yandong Ma,Hong Liu,Hong Liu,Yuanhua Sang +11 more
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Bias‐Free Solar Water Splitting by Tetragonal Zircon BiVO4 Nanocrystal Photocathode and Monoclinic Scheelite BiVO4 Nanoporous Photoanode
Xizhuang Liang,Peng Wang,Fengxia Tong,Xiaolei Liu,Cong Wang,Minrui Wang,Zhang Qianqian,Zeyan Wang,Yuanyuan Liu,Zhaoke Zheng,Ying Dai,Baibiao Huang +11 more
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Stacking-Independent Ferromagnetism in Bilayer VI3 with Half-Metallic Characteristic.
TL;DR: This work systematically investigates the electronic and magnetic properties of bilayer VI3 based on the density functional theory (DFT) and shows that bilayerVI3 shows half-metallic characteristic and observes a robust ferromagnetic ground state in bilayers VI3, which is independent on the stacking configurations.