个人简介
骆群,中科院苏州纳米所研究员,博士生导师。2006年获郑州大学工学学士学位,2011获浙江大学工学博士学位,期间在法国雷恩一大化学系交流半年。2011年至2014年在中科院苏州纳米所从事博士后研究工作,博士后出站后留所工作。入选中科院青年促进会会员和中科院青年交叉团队成员。
研究领域
印刷光电功能材料以及光伏器件,主要从事印刷有机和钙钛矿太阳能电池相关的墨水、大面积透明导电电极、高效大面积柔性电池构建以及应用方面的研究工作。
近期论文
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Wei, J. F.;Ji, G. Q.;Zhang, C. J.;Yan, L. P.;Luo, Q.;Wang, C.;Chen, Q.;Yang, J. L.;Chen, L. W.;Ma, C. Q., Silane-Capped ZnO Nanoparticles for Use as the Electron Transport Layer in Inverted Organic Solar Cells. ACS Nano 2018, 12 (6), 5518-5529.
Han, Y.;Chen, X.;Wei, J.;Ji, G.;Wang, C.;Zhao, W.;Lai, J.;Zha, W.;Li, Z.;Yan, L.;Gu, H.;Luo, Q.;Chen, Q.;Chen, L.;Hou, J.;Su, W.;Ma, C. Q., Efficiency above 12% for 1 cm2 Flexible Organic Solar Cells with Ag/Cu Grid Transparent Conducting Electrode. Adv. Sci. 2019, 6 (22), 1901490.
Wang, Z.;Han, Y.;Yan, L.;Gong, C.;Kang, J.;Zhang, H.;Sun, X.;Zhang, L.;Lin, J.;Luo, Q.;Ma, C. Q., High Power Conversion Efficiency of 13.61% for 1 cm2 Flexible Polymer Solar Cells Based on Patternable and Mass‐Producible Gravure‐Printed Silver Nanowire Electrodes. Adv. Funct. Mater. 2021, 31, 2007276.
Han, Y.;Hu, Z.;Zha, W.;Chen, X.;Yin, L.;Guo, J.;Li, Z.;Luo, Q.;Su, W.;Ma, C. Q., 12.42% Monolithic 24.42 cm2 Flexible Organic Solar Cells Enabled by an Amorphous Ito-Modified Metal Grid Electrode. Adv. Mater. 2022, 34 (17), e2110276.
Liu, B.;Su, X.;Lin, Y.;Li, Z.;Yan, L.;Han, Y.;Luo, Q.;Fang, J.;Yang, S.;Tan, H.;Ma, C. Q., Simultaneously Achieving Highly Efficient and Stable Polymer:Non-Fullerene Solar Cells Enabled by Molecular Structure Optimization and Surface Passivation. Adv. Sci. 2022, e2104588.
Chen, X.;Huang, R.;Han, Y.;Zha, W.;Fang, J.;Lin, J.;Luo, Q.;Chen, Z.;Ma, C. Q., Balancing the Molecular Aggregation and Vertical Phase Separation in the Polymer: Nonfullerene Blend Films Enables 13.09% Efficiency of Organic Solar Cells with Inkjet‐Printed Active Layer. Adv. Energy Mater. 2022, 2200044.
Xu, Z. H.; Xu, G. N.; Luo, Q.; Han, Y. F.; Tang, Y.; Miao, Y.; Li, Y. X.; Qin, J.; Guo, J. B.; Zha, W. S.; Gong, C.; Lu, K.; Zhang, J. Q.; Wei, Z. X.; Yang, Y. C.; Li, Z. J.; Ma, C.-Q.; In situ performance and stability tests of large-area flexible polymer solar cells in the 35 km stratospheric environment, Natl. Sci. Rev. 2022, DOI: xxx, xxx.