个人简介
教育经历
2010 – 2013 澳大利亚昆士兰科技大学,科学与工程学院,博士
2007 – 2010 南京工业大学,理学院,硕士
2003 – 2007 南京工业大学,理学院,学士
工作经历
2015 – 至今 南京工业大学,先进材料研究院,副教授
2013 – 2015 日本电气通信大学,工程科学学院,研究员
研究领域
1. 钙钛矿材料的设计制备与光电器件
2. 量子点的表面工程与发光性能研究
3. 无机电荷传输材料的制备及其在光电器件中的应用
近期论文
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J. Chang, S. Zhang, N. Wang, Y. Sun, Y. Wei, R. Li, C. Yi, J. Wang and W. Huang, Enhanced Performance of Red Perovskite Light-emitting diodes through the dimensional tailoring of perovskite multiple quantum wells, J. Phys. Chem. Lett., 2018, 9, 881-886.
J. Chang, Y. Ogomi, C. Ding, Y. H. Zhang, T. Toyoda, S. Hayase, K. Katayama and Q. Shen, Ligand-dependent exciton dynamics and photovoltaic properties of PbS quantum dot heterojunction solar cells, Phys. Chem. Chem. Phys., 2017, 19, 6358-6367.
J. Chang, T. Oshima, S. Hachiya, K. Sato, T. Toyoda, K. Katayama, S. Hayase and Q. Shen, Uncovering the charge transfer and recombination mechanism in ZnS-coated PbS quantum dot sensitized solar cells, Solar Energy, 2015, 122, 307-313.
J. Chang, Y. Kuga, I. Mora Sero, T. Toyoda, Y. Ogomi, S. Hayase, J. Bisquert and Q. Shen, High reduction of interfacial charge recombination in colloidal quantum dot solar cells by metal oxide surface passivation, Nanoscale ,2015, 7, 5446-5456.
J. Chang and E. R. Waclawik, Colloidal semiconductor nanocrystals: controlled synthesis and the surface chemistry in organic media, RSC Advances, 2014, 4, 23505 - 23527.
J. Chang and E. R. Waclawik, Controlled synthesis of CuInS2, Cu2SnS3 and Cu2ZnSnS4 nano-structures: insight into the universal phase-selectivity mechanism, CrystEngComm, 2013, 15, 5612-5619.
J. Chang, R. Ahmed, H. Wang, H. Liu, R. Li, P. Wang and E. R. Waclawik, ZnO nanocones with high-index {10-11} facets for enhanced energy conversion efficiency of dye-sensitized solar cells, J. Phys. Chem. C, 2013, 117, 13836-13844.
J. Chang, M. Z. Ahmad, W. Wlodarski and E. R. Waclawik, Self-assembled 3D ZnO porous structures with exposed reactive {0001} facets and their enhanced gas sensitivity, Sensors ,2013, 13, 8445-8460.
J. Chang and E. R. Waclawik, Facet-controlled self-assembly of ZnO nanocrystals by non-hydrolytic aminolysis and their photodegradation activities, CrystEngComm ,2012, 14, 4041-4048.
J. Chang and E. R. Waclawik, Experimental and theoretical investigation of ligand effects on the synthesis of ZnO nanoparticles, J. Nanopart. Res., 2012, 14, 1012.