Z
Zheshuai Lin
Researcher at Chinese Academy of Sciences
Publications - 557
Citations - 21815
Zheshuai Lin is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Second-harmonic generation & Band gap. The author has an hindex of 67, co-authored 506 publications receiving 15448 citations. Previous affiliations of Zheshuai Lin include Northwest University (United States) & University of Cambridge.
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New insights into the origin of visible light photocatalytic activity of nitrogen-doped and oxygen-deficient anatase TiO2.
TL;DR: These ab initio calculations reveal that the optical absorption of nitrogen-doped TiO2 in the visible light region is primarily located between 400 and 500 nm, while that of oxygen-deficientTiO2 is mainly above 500 nm.
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Interstitial P-Doped CdS with Long-Lived Photogenerated Electrons for Photocatalytic Water Splitting without Sacrificial Agents.
Rui Shi,Huifang Ye,Fei Liang,Zhuan Wang,Kai Li,Yuxiang Weng,Zheshuai Lin,Wen-Fu Fu,Chi-Ming Che,Yong Chen +9 more
TL;DR: Through interstitial P doping, the impurity level of S vacancies is located near the Fermi level and becomes an effective electron trap level in CdS-P, which can change dynamic properties of photogenerated electrons and thus prolong their lifetimes.
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Beryllium-free Li4Sr(BO3)2 for deep-ultraviolet nonlinear optical applications.
Sangen Zhao,Pifu Gong,Lei Bai,Xiang Xu,Shuquan Zhang,Zhihua Sun,Zheshuai Lin,Maochun Hong,Chuangtian Chen,Junhua Luo +9 more
TL;DR: It is suggested that Li4Sr(BO3)2 is an attractive candidate for the next generation of deep-ultraviolet NLO materials, which preserves the structural merits of KBBF and enhances the efficiency of second-harmonic generation by more than half that of KB BF.
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The development of new borate-based UV nonlinear optical crystals
TL;DR: In this article, the ab initio plane-wave pseudopotential energy method is combined with the anionic group theory to evaluate the degree of approximation of the group theory for nonlinear optical crystals.
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Two Novel Bi-Based Borate Photocatalysts: Crystal Structure, Electronic Structure, Photoelectrochemical Properties, and Photocatalytic Activity under Simulated Solar Light Irradiation
TL;DR: In this paper, two novel Bi-based borate photocatalysts Bi4B2O9 and Bi2O2[BO2(OH)] with layered structure have been successfully developed.