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个人简介

学习经历: 博士(直博),北京航空航天大学,2007年9月-2014年7月 学士,兰州大学,2003年9月-2007年7月 工作经历: 2015年8月至今,河南师范大学物理学院 2014年7月至2015年7月,兰州空间技术物理研究所 教学工作: 主讲《大学物理实验》 曾讲过《普通化学》、《新材料技术进展》 科研活动: 1. 铋氧基材料的表面结构调制及对光催化性能的影响,国家自然科学基金应急管理项目,2018年,主持 2. 铋氧基光催化材料的表面微修饰及在处理含铅电池废水中的应用,河南省科技攻关项目,2018-2019年,主持 3. BiOCl二维材料(001)活性晶面的可控生长及氧空位介导的光催化性能调制研究,河南省高等学校重点科研项目,2019-2020年,主持 4. 可见光响应的碱式硝酸铋二维光催化材料缺陷调制研究,河南师范大学青年科学基金(理科),2019-2021年,主持

研究领域

实验凝聚态物理,半导体光电极、光催化材料研究

近期论文

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1. J. Shang, H. G. Chen, B. Zhao, H. Zhang, X. W. Wang, “Enhanced photocatalytic reduction activity of BiOCl nanosheets loaded on β-Bi2O3”, J Mater. Sci.-Mater. El. 30, 17956 (2019). 2. J. Shang, H. G. Chen, T. Z. Chen, X. W. Wang, G. Feng, M. W. Zhu, Y. X. Zhu, X. S. Jia, “Photocatalytic degradation of rhodamine B and phenol over BiFeO3/ BiOCl nanocomposite”, Appl. Phys. A-Mater. 125, 133 (2019). 3. 尚军, 陈会歌, 陈廷珍, 冯刚, 王显威, “氢氧根调制氯氧化铋的表面结构及光催化活性”, 河南科技大学学报(自然科学版), 40, 6 (2019). 4. J. Shang, T. Z, Chen, G. Huang, F. Zhou, X. W. Wang, L. Y. Sun, “Oxygen vacancy induced bismuth basic nitrate with excellent photocatalytic activity”, J Mater. Sci.-Mater. El. 29, 18067 (2018). 5. J. Shang, T. Z, Chen, X. W. Wang, L. Y. Sun, Q. Q. Su, “Facile fabrication and enhanced photocatalytic performance: From BiOCl to element-doped BiOCl”, Chem. Phys. Lett. 706, 483 (2018). 6. X. Lou, J. Shang, L. Wang, H. F. Feng, W. C. Hao, T. M. Wang, Y. Du, “Enhanced photocatalytic activity of Bi24O31Br10: in-situ constructing heterojunction with BiOI”, J. Mater. Sci. Technol. 33, 281 (2017). 7. J. Shang, W. C. Hao, X. J. Lv, T. M. Wang, X. L. Wang, Y. Du, S. X. Dou, T. F. Xie, D. J. Wang, J. O. Wang, “Bismuth oxybromide with reasonable photocatalytic reduction activity under visible light”, ACS Catal. 4, 954 (2014). 8. L. Wang, J. Shang (共同一作), W. C. Hao, S. Q. Jiang, S. H. Huang, T. M. Wang, Z. Q. Sun, Y. Du, S. X. Dou, T. F. Xie, D. J. Wang, J. O. Wang, “A dye-sensitized visible light photocatalyst-Bi24O31Cl10”, Sci. Rep. 4, 7384 (2014). 9.J. Shang, H. F. Qi, H. F. Feng, L. Wang, J. Y. Zhang, Y. G. Wang, W. C. Hao, T. M. Wang, “Silver microgrid transparency conductive electrode based on bulk plasmon effect for ultraviolet wavelength application”, Phys. Status Solidi-RRL 7, 1071 (2013). 10. J. Shang, Y. Gao, W. C. Hao, X. Jing, H. J. Xin, L. Wang, H. F. Feng, T. M. Wang, “Enhancement of visible light photocatalytic activity of α-Bi2O3 via non-metal S doping”, Chinese Physics B 23, 038103 (2014). 11. J. Shang, W. Zou, W. C. Hao, X. Xin, H. Z. Xu, T. M. Wang, “Visible-light photocatalytic properties of γ-Bi2O3 composited with Fe2O3”, Rare Metals 30 (Spec. Issue), 140 (2011). 12. K. X. Zhu, L. W. Guo, J. J. Lin, W. C. Hao, J. Shang, Y. P. Jia, L. L. Chen, S. F. Jin, W. J. Wang,X. L. Chen, “Graphene covered SiC powder as advanced photocatalytic material”, Appl. Phys. Lett. 100, 023113 (2012). 13. Y. Gao, H. J. Xin, J. Shang, L. Wang, W. C. Hao, T. M. Wang, “Visible light photocatalytic properties of α-Bi2O3 composited with Fe2O3” Mater. Res. Innov. 18, S4(41) (2014). 14. H. F. Feng, Y. X. Yu, S. Q. Jiang, J. Shang, Y. Cheng, L. Wang, W. C. Hao, T. M. Wang, “Synthesis of magnetic core-shell iron nanochains for potential applications in Cr (VI) ion pollution treatment”, Rare Metals 1 (2014). 15. S. Q. Jiang, J. Shang, L. Wang, T. T. Zhai, W. W. Wang, W. C. Hao, T. M. Wang, “Plasmonic photocatalytic activity of silver nano particles using carbon sphere as support”, Energy Environ. Focus 4, 128 (2015).

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