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A comparative study of bank efficiency in three Chinese regions: Mainland China, Hong Kong, and Macao Journal article
Journal of Financial Research, 2022
Authors:  XINHUA GU;  Lain Z.;  Zhao Q
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Anisotropic large magnetoresistance and Fermi surface topology of terbium monoantimonide Journal article
Materials Today Physics, 2022,Volume: 24
Authors:  Tang, F.;  Shen, X.;  Zhou, J.;  Cong, S.;  Zhang, L.;  Zhou, W.;  Han, Z. D.;  Qian, B.;  Jiang, X. F.;  Zheng, R. K.;  Zhao, W.;  Kan, X. C.;  Tang, J.;  Han, Y. Y.;  Yin, X. Q.;  Fang, Y.;  Ju, S.
Favorite |  | TC[WOS]:0 TC[Scopus]:1 | Submit date:2022/05/13
Angular Magnetoresistance  Antiferromagnetic  Magnetic Anisotropy  Magnetoresistance  
Comparison for quantification of eight components in Alpinia officinarum Hance by using high-performance liquid chromatography coupled with diode array detector and charged aerosol detector with individual and substitute reference compound Journal article
Journal of Pharmaceutical and Biomedical Analysis, 2022,Volume: 210
Authors:  Wang, Cheng;  Chao, Incheng;  Qin, You;  Zhang, Wanxin;  Zhao, Jing;  Zhang, Qingwen;  Li, Shaoping
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Alpinia Officinarum Hance  Charged Aerosol Detector  Diarylheptanoids  Diode Array Detector  Flavonoids  High-performance Liquid Chromatography  
Activated Triplet Exciton Release for Highly Efficient Room- Temperature Phosphorescence Based on S,N-Doped Polymeric Carbon Nitride Journal article
Journal of Physical Chemistry Letters, 2022,Page: 726-732
Authors:  Wang, W.H.;  Mei, R.L.;  Zhao, Q.X.;  Liu, C.;  Chen, H.Y.;  Su, S.C.;  Wang, S.
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Triplet Exciton  Carbon Nitride  Phosphorescence  
Quantum oscillations and quasilinear magnetoresistance in the topological semimetal candidate ScSn2 Journal article
Physical Review B, 2021,Volume: 104,Issue: 16
Authors:  Chen, Y.;  Tang, F.;  Meng, W. Z.;  Shen, X.;  Zhao, W.;  Yin, X. Q.;  Cong, S.;  Yi, Q. H.;  Zhang, L.;  Wu, D. J.;  Han, Z. D.;  Qian, B.;  Jiang, X. F.;  Zhang, X. M.;  Fang, Y.
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Phosphorescent Carbon-Nanodots-Assisted Förster Resonant Energy Transfer for Achieving Red Afterglow in an Aqueous Solution Journal article
ACS Nano, 2021,Page: 16242-16254
Authors:  Liang, Y.C.;  Cao, Q.;  Liu, K.K.;  Peng, X.Y.;  Sui, L.Z.;  Wang, S.;  Song, S.Y.;  Wu, X.Y.;  Zhao, W.B.;  Deng, Y.;  Lou, Q.;  Dong, L.;  Shan, C.X.
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carbon nanodots  phosphorescence  red afterglow  Förster resonant energy transfer  bioimaging  
Temperature-dependent structure and magnetization of YCrO3 compound Journal article
Chinese Physics B (in press), 2021,Page: XXX-XXX
Authors:  Zhao, Q.;  Zhu, Y. H. ;  Wu, S.;  Xia, J. C. ;  Zhou, P. F. ;  Sun, K. T. ;  Li, H.
Favorite |  | TC[WOS]:0 TC[Scopus]:0 | Submit date:2022/08/11
structure  magnetization  YCrO3  
Accelerating precision anti-cancer therapy by time-lapse and label-free 3D tumor slice culture platform Journal article
Theranostics, 2021,Page: 9415-9430
Authors:  Xing, F.;  Huang, S.;  Liu, Y.-C.;  Lyu, X.;  Su, S. M.;  Chan, U. I.;  Wu, P.-C.;  Yan, Y.;  Ai, N.;  Li, J.;  Zhao, M.;  Rajendran, B.;  Liu, J.;  Shao, F.;  Sun, H.;  Luo, G.;  Zhu, W.;  Miao, K.;  Zhao, Q.;  Luo, KQ.;  Ge, W.;  Xu, X.;  Wang, G.;  Liu, T.-M.;  Deng, C.-X.
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Tumor Organoid  Lipofuscin  Two-photon Fluorescence Microscopy  
Aluminum-Based Surface Polymerization on Carbon Dots with Aggregation-Enhanced Luminescence Journal article
The Journal of Physical Chemistry Letters, 2021,Page: 4530-4536
Authors:  Zhao, Y.Y.;  He, B.C.;  Liu, E.S.;  Li, J.L.;  Wang, L.M.;  Chen, S.;  Chen, Y.Q.;  Tan, Z.A.;  Ng, K.W.;  Wang, S.P.;  Tang, Z.K.;  Qu, S.N.
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Carbon Dots  Aggregation Induced Quenching  Solid State Emission  Aluminum Coordination  Surface Polymerization  Microwave Synthesis  
Aqueous production of secondary organic aerosol from fossil-fuel emissions in winter Beijing haze Journal article
Proceedings of the National Academy of Sciences, 2021,Page: In press-000
Authors:  Wang, J.;  Ye, J.;  Zhang, Q.;  Zhao, J.;  Wu, Y.;  Li, J.;  Liu, D.;  Li, W.;  Zhang, Y.;  Wu, C.;  Xie, C.;  Qin, Y.;  Lei, Y.;  Huang, X.;  Guo, J.;  Liu, P.;  Fu, P.;  Li, Y.J.;  Lee, H.C.;  Choi, H.;  Zhang, J.;  Liao, H.;  Chen, M.;  Sun, Y.;  Ge, X.;  Martin, S.T.;  Jacob, D.J.
Favorite |  | TC[WOS]:0 TC[Scopus]:0 | Submit date:2022/07/26
Aqueous phase  SOA  haze