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| Monolithic all-perovskite tandem solar cells with 24.8% efficiency exploiting comproportionation to suppress Sn (II) oxidation in precursor ink R Lin, K Xiao, Z Qin, Q Han, C Zhang, M Wei, MI Saidaminov, Y Gao, J Xu, ... Nature Energy 4 (10), 864-873, 2019 | 1150 | 2019 |
| 11.4% Efficiency non-fullerene polymer solar cells with trialkylsilyl substituted 2D-conjugated polymer as donor H Bin, L Gao, ZG Zhang, Y Yang, Y Zhang, C Zhang, S Chen, L Xue, ... Nature communications 7, 13651, 2016 | 1068 | 2016 |
| Precision measurement beyond the shot-noise limit M Xiao, LA Wu, HJ Kimble Physical review letters 59 (3), 278, 1987 | 953 | 1987 |
| Measurement of dispersive properties of electromagnetically induced transparency in rubidium atoms M Xiao, Y Li, S Jin, J Gea-Banacloche Physical Review Letters 74 (5), 666, 1995 | 910 | 1995 |
| Electromagnetically induced transparency in ladder-type inhomogeneously broadened media: Theory and experiment J Gea-Banacloche, Y Li, S Jin, M Xiao Physical Review A 51 (1), 576, 1995 | 897 | 1995 |
| Cathode engineering with perylene-diimide interlayer enabling over 17% efficiency single-junction organic solar cells J Yao, B Qiu, ZG Zhang, L Xue, R Wang, C Zhang, S Chen, Q Zhou, ... Nature Communications 11 (1), 1-10, 2020 | 760 | 2020 |
| Enhanced Kerr nonlinearity via atomic coherence in a three-level atomic system H Wang, D Goorskey, M Xiao Physical review letters 87 (7), 073601, 2001 | 641 | 2001 |
| Observation of electromagnetically induced Talbot effect in an atomic system Z Zhang, X Liu, D Zhang, J Sheng, Y Zhang, Y Zhang, M Xiao Physical Review A 97 (1), 013603, 2018 | 639 | 2018 |
| Surface-related emission in highly luminescent CdSe quantum dots X Wang, L Qu, J Zhang, X Peng, M Xiao Nano Letters 3 (8), 1103-1106, 2003 | 620 | 2003 |
| Two-photon-pumped perovskite semiconductor nanocrystal lasers Y Xu, Q Chen, C Zhang, R Wang, H Wu, X Zhang, G Xing, WW Yu, ... Journal of the American Chemical Society 138 (11), 3761-3768, 2016 | 609 | 2016 |
| The Talbot effect: recent advances in classical optics, nonlinear optics, and quantum optics J Wen, Y Zhang, M Xiao Advances in Optics and Photonics 5 (1), 83-130, 2013 | 524 | 2013 |
| Resonance fluorescence from a coherently driven semiconductor quantum dot in a cavity A Muller, EB Flagg, P Bianucci, XY Wang, DG Deppe, W Ma, J Zhang, ... Physical Review Letters 99 (18), 187402, 2007 | 512 | 2007 |
| Observation of Parity-Time Symmetry in Optically Induced Atomic Lattices Z Zhang, Y Zhang, J Sheng, L Yang, MA Miri, DN Christodoulides, B He, ... arXiv preprint arXiv:1604.04025, 2016 | 483 | 2016 |
| Squeezed states of light from an optical parametric oscillator LA Wu, M Xiao, HJ Kimble JOSA B 4 (10), 1465-1475, 1987 | 483 | 1987 |
| An In Situ Simultaneous Reduction‐Hydrolysis Technique for Fabrication of TiO2‐Graphene 2D Sandwich‐Like Hybrid Nanosheets: Graphene‐Promoted Selectivity of Photocatalytic … W Tu, Y Zhou, Q Liu, S Yan, S Bao, X Wang, M Xiao, Z Zou Advanced Functional Materials 23 (14), 1743-1749, 2013 | 470 | 2013 |
| Phase segregation due to ion migration in all-inorganic mixed-halide perovskite nanocrystals H Zhang, X Fu, Y Tang, H Wang, C Zhang, WY William, X Wang, Y Zhang, ... Nature communications 10 (1), 1088, 2019 | 446 | 2019 |
| Resonantly driven coherent oscillations in a solid-state quantum emitter EB Flagg, A Muller, JW Robertson, S Founta, DG Deppe, M Xiao, W Ma, ... Nature Physics 5 (3), 203-207, 2009 | 445 | 2009 |
| High efficiency polymer solar cells with efficient hole transfer at zero highest occupied molecular orbital offset between methylated polymer donor and brominated acceptor C Sun, S Qin, R Wang, S Chen, F Pan, B Qiu, Z Shang, L Meng, C Zhang, ... Journal of the American Chemical Society 142 (3), 1465-1474, 2020 | 431 | 2020 |
| Charge separation from an intra-moiety intermediate state in the high-performance PM6: Y6 organic photovoltaic blend R Wang, C Zhang, Q Li, Z Zhang, X Wang, M Xiao Journal of the American Chemical Society 142 (29), 12751-12759, 2020 | 406 | 2020 |