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Dynamic Reversible Evolution of Solid Electrolyte Interface in Nonflammable Triethyl Phosphate Electrolyte Enabling Safe and Stable Potassium‐Ion Batteries Journal article
Advanced Functional Materials, 2022,Volume: 32,Page: 2200771
Authors:  Ji, S.P.;  Li, J.;  Li, J.F.;  Song, C.;  Wang, S.;  Wang, K.;  Hui, K.S.;  Zha, C.;  Zheng, Y.;  Dinh, D.A.;  Chen, S.;  Zhang, J.;  Mai, W.;  Tang, Z.K.;  Shao, Z.;  Hui, K.N.
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Non-flammable Electrolytes, Potassium-ion Batteries, Solid Electrolyte Interfaces, Triethyl Phosphate, Zinc Phosphide  
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.
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Angular Magnetoresistance  Antiferromagnetic  Magnetic Anisotropy  Magnetoresistance  
Stable and Efficient Blue‐Emitting CsPbBr3 Nanoplatelets with Potassium Bromide Surface Passivation Journal article
Small, 2021,Page: 1-10
Authors:  Lin, H.;  Wei, Q.;  Ng, K. W.;  Dong, J.Y.;  Li, J.L.;  Liu, W.W;  Yan, S.S.;  Chen, S.;  Xing, G.C.;  Tang, X.S.;  Tang, Z.K.;  Wang, S.P.
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Metal-halide Perovskite  Stability  Nanoplatelets  Surface Passivation  
Stable UV-Pumped White Light-Emitting Diodes Based on Anthracene-Coated CsCu2I3 Journal article
Journal of physical Chemistry C, 2021,Page: 13076-13083
Authors:  Liu, W.W.;  Ng, K. W.;  Lin, H.;  Dai, Z.Y.;  Xu, J.C.;  Su, S.C.;  Tang, Z.K.;  Wang, S.P.
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Anthracene  Perovskites  White Light-emitting Diodes  Cscu2i3  
Freestanding CH3NH3PbBr3 single-crystal microwires for optoelectronic applications synthesized with a predefined lattice framework Journal article
Journal of Materials Chemistry C, 2021,Page: 4771-4781
Authors:  Yan, S.S;  Ma, Y.;  Kong, Y.C.;  Jiang, J.Z;  Xie, X.H.;  Su, S.C.;  Tang, Z.;  Shen, S.;  Wang, S.P.;  Ng, K. W.
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Perovskite  Single-crystal  Microwire  Photodetector  
Close-loop recycling of perovskite solar cells through dissolution-recrystallization of perovskite by butylamine Journal article
Cell Reports Physical Science, 2021,Page: 100341-100341
Authors:  Feng, X.Y.;  Guo, Q.;  Xiu, J.;  Ying, Z;  Ng, K. W.;  Huang, L.M.;  Wang, S.P.;  Pan, H.;  Tang, Z.;  He, Z.B.
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Perovskite  Recycling  Solar Cells  Butylamine  
Metal-to-ligand charge transfer chirality-based sensing of mercury ions Journal article
Photonics Research, 2021,Page: 213-221
Authors:  Wang, X;  Wang, Q;  Chen, Y;  Li, J;  Pan, R;  Cheng, X;  Ng, K. W.;  Zhu, X;  He, T;  Cheng, J;  Tang, Z;  Chen, R
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NA  
Spray-deposited PbS colloidal quantum dot solid for near-infrared photodetectors Journal article
Nano Energy, 2020,Page: In Press-In Press
Authors:  Chen, W;  Tang, H;  Chen, Y;  Heger, J;  Li, N;  Kreuzer, L;  Xie, Y;  Li, D;  Anthony, C;  Pikramenou, Z;  Ng, K. W.;  Sun, X. W.;  Wang, K;  Müller-Buschbaum, P
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Pbs Quantum Dotsspray Depositiongisaxsnear-infrared Photodetector  
Genetic risk of extranodal natural killer T-cell lymphoma: a genome-wide association study in multiple populations Journal article
The Lancet Oncology, 2020,Volume: 21,Issue: 2,Page: 306-316
Authors:  Lin G.-W.;  Xu C.;  Chen K.;  Huang H.-Q.;  Chen J.;  Song B.;  Chan J.K.C.;  Li W.;  Liu W.;  Shih L.-Y.;  Chuang W.-Y.;  Kim W.S.;  Tan W.;  Peng R.-J.;  Laurensia Y.;  Cheah D.M.Z.;  Huang D.;  Cheng C.L.;  Su Y.-J.;  Tan S.-Y.;  Ng S.-B.;  Tang T.P.L.;  Han K.;  Wang V.Y.-F.;  Jia W.-H.;  Pei Z.;  Li Y.-J.;  Gao S.;  Shi Y.;  Hu Z.;  Zhang F.;  Zhang B.;  Zeng Y.-X.;  Shen H.;  He L.;  Ong C.K.;  Lim S.T.;  Chanock S.;  Kwong Y.-L.;  Lin D.;  Rothman N.;  Khor C.C.;  Lan Q.;  Bei J.-X.;  Au W.-Y.;  Chiu B.;  Fan L.;  Li Z.;  LAM T.H.;  Liang R.;  Yeh S.-P.;  Xu J.;  Ip D.K.M.;  Li G.;  Xu G.;  Wang X.;  Bai O.;  Cai Q.-Q.;  Xia Y.;  Chen J.-R.;  Luo C.-L.;  Xiong X.-Y.;  Zeng Y.;  Wei P.-P.;  Liu C.-J.;  Liu Y.-X.;  Cao Y.-L.;  He S.;  Liu Y.;  Ha J.C.H.;  Khoo L.P.;  Kee R.X.;  Tan J.;  Liu Y.;  Zhang F.;  Feng Y.;  Rao H.;  Chng W.J.;  Chan J.Y.S.;  Somasundaram N.D.;  Tao M.;  Ras M.F.B.H.;  Yeoh K.-W.;  Goh Y.T.;  Ong S.Y.;  Grigoropoulos N.F.;  Wong E.K.Y.;  Pang J.W.L.;  Lim J.Q.;  Chia B.K.H.;  Kim S.J.;  Yoon S.E.;  Choi S.;  Kuo C.-Y.;  Chen T.-Y.;  Su Y.-C.;  Huang W.-T.;  Lee M.-Y.;  Yao W.;  Ngan K.-C.;  Liu H.;  Lee H.;  Yip S.-F.;  Liu J.;  Li J.;  Rabkin C.S.;  Berndt S.;  Bassig B.;  Hu W.;  Zhao M.;  Li Y.;  Zhai Q.;  Shao Z.;  Qiu L.;  Wang J.;  Xu F.-P.;  Chen L.;  Hou Y.;  Xu S.;  Huang Z.;  Xie M.;  Li M.;  Zhong S.;  Zhang Y.;  Gu D.;  Wang X.;  Foo J.N.;  Li Z.;  Dai J.;  Sun L.;  Wang Z.;  Liu H.;  Zhou H.;  Sun Y.;  Koh W.-P.;  Heng C.-K.;  Hong C.S.;  Ahn J.;  Park K.H.;  Tin A.;  Gu J.;  Xia X.;  Li B.;  Yu X.;  International NKTCL Working Group
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Side-Chain Engineering of Donor–Acceptor Conjugated Small Molecules As Dopant-Free Hole-Transport Materials for Efficient Normal Planar Perovskite Solar Cells Journal article
ACS Applied Materials & Interfaces, 2019,Page: 48556-48563
Authors:  Tu, B.;  Wang, Y.;  Chen, W.;  Liu, B. ;  Feng, X.;  Zhu, Y.;  Yang, K. ;  Zhang, Z.;  Shi, Y.;  Guo, X.;  Li, H.-F.;  Tang, Z.;  Djurisiic, A. B. ;  He, Z.
Favorite |  | TC[WOS]:0 TC[Scopus]:0 | Submit date:2022/08/11
side-chain engineering  hole-transport materials  persolar cells