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张云霞
单位:固体物理所
地址:安徽省合肥市蜀山湖路350号
邮编:230031
电话:86-551-65592145
个人主页: http://www.hf.cas.cn/sbpy/yjsb/dsfc/bdfc/201507/t20150706_4385118.html
 
个人简历 Personal resume
张云霞,中科院合肥物质科学研究院固体物理所,研究员,博士生导师。目前主要从事电子废弃物中高值金属回收、废旧锂电池回收与再生循环利用等研究。累计发表SCI收录论文190余篇,他引8400余次,H-index 53;授权国家发明专利32件。参与国家重点研发计划项目3项,主持多项国家自然科学基金面上项目、安徽省人才开发基金、安徽省环保科研专项等项目。
 
研究方向 Research direction
废旧锂离子电池回收与再生研究
电子废弃物中高值金属回收研究
 
招生信息 Enrollment information
拟招收材料、物理、化学等专业的博士研究生。
 
论文专著 The monograph
1) Fe/Fe3C@CNTs anchored on carbonized wood as both self-standing anode and cathode for synergistic electro-Fenton oxidation and sequestration of As(III) - Chemical Engineering Journal - 2021
2) Simultaneous Separation and Recovery of Gold and Copper from Electronic Waste Enabled by an Asymmetric Electrochemical System - ACS Applied Materials & Interfaces - 2022
3) A freestanding, hierarchically porous poly(imine dioxime) membrane enabling selective gold recovery from e-waste with unprecedented capacity - EcoMat - 2022
4) E-waste derived CuAu bimetallic catalysts supported on carbon cloth enabling effective degradation of bisphenol A via an electro-Fenton process - Separation and Purification Technology - 2023
5) Selective Pt recovery from spent catalyst enabled by hierarchical porous poly(imine dioxime)/polyethylenimine composite membrane for recycled Pt/C catalyst - Separation and Purification Technology - 2023
6) Upcycling of Degraded LiCoO2 Cathodes into High-performance Lithium-ion Batteries via a Three-in-one Strategy - Advanced Energy Materials - 2023
7) Dual-Crosslinking Polydopamine/Poly(imide dioxime) Porous Network Membrane Enables Efficient and Selective Gold Recovery from e-Waste - ACS EST Engieering - 2024
8) Photo-enhanced precious metal recovery enabled by trithiocyanuric-linked covalent triazine frameworks - Chemical Engineering Journal - 2024
9) Green recycling of spent LiCoO2 cathodes using a water-based deep eutectic solvent - Separation and Purification Technology - 2025
10) Hybrid Surface Modification and Bulk Doping Enable Spent LiCoO2 Cathodes for High-voltage Operation - Advanced Materials - 2024
 
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