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赵海佳


发布时间:2023-02-15        浏览:

赵海佳

博士,团队博士后

办公地点:冶金楼北407

办公电话:0555-2311571

传真:0555-2311571

电子邮件:haijzhao@ahut.edu.cn

/ 科研方向

熔盐化学/电化学制备金属、合金、化合物等材料;

铜废弃物资源化;

储能材料、催化材料的开发及制备;

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赵海佳,女,1994年生,内蒙古二连浩特市人,博士,团队博士后。2016年毕业于bat365旧网址,同年进入东北大学申请硕博连读,于20226月毕业,获得冶金物理化学工学博士学位,同年进入bat365旧网址(中国)有限公司官网。主要从事熔盐化学/电化学、绿色电化学冶金提取、储能催化材料得开发及制备相关方面的研究工作。目前以员工一作在Journal of Cleaner ProductionACS Sustainable Chemistry & EngineeringElectrochimica Acta等期刊上发表SCI论文8篇,H指数为10,授权专利4项。

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[1] H. Zhao, J. Qu, F. Zhou, et al. Self-driven salt-thermal reduction approach for the synthesis of Cu2O and AgCl-Cu2O hybrids with superior photocatalytic activity, ACS Sustainable Chemistry & Engineering, 2021, 9(16): 5651-5660. (IF = 9.224).

[2] H. Zhao, Z. Zhao, J. Qu, et al. A combined oxidation and salt-thermal approach to converting copper scraps to copper oxides as energy storage materials, Journal of Cleaner Production, 2021, 320: 128870. (IF = 11.072).

[3] H. Zhao, J. Qu, X. Li, et al. Carbonate materials synthesis using molten salt templates, Journal of Materials Science, 2021, 16. 7778-7790. (IF = 4.682).

[4] H. Zhao, J. Qu, Z. Zhao, et al. Molten salt leaching approach for separation of copper and iron in the form of oxides from chalcopyrite, Journal of Sustainable Metallurgy, 2022, 8(3):1340-1348. (IF = 3.068).

[5] H. Zhao, H. Xie, X. Zhou, et al. Engineering the electrochemical reduction of carbon and silica in molten CaCl2: Manipulation of the electrolytic products, Journal of the Electrochemical Society, 2019, 166(4): E137-E143. (IF = 4.386).

[6] H. Xie, H. Zhao, J. Qu, et al. Thermodynamic considerations of screening halide molten-salt electrolytes for electrochemical reduction of solid oxides/sulfides, Journal of Solid State Electrochemistry, 2019, 23(3): 903-909. (IF = 2.747).

[7] H. Xie, H. Zhao, Q. Song, et al. Anodic gases generated on a carbon electrode in oxide-ion containing molten CaCl2 for the electro-deoxidation process, Journal of the Electrochemical Society, 2018, 165(14): E759-E762. (IF = 4.316).

[8] H. Xie, H. Zhao, J. Liao, et al. Electrochemically controllable coating of a functional silicon film on carbon materials, Electrochimica Acta, 2018, 269: 610-616. (IF = 7.336).

[9] X. Chen, H. Zhao, J. Qu, et al. A molten calcium carbonate mediator for the electrochemical conversion and absorption of carbon dioxide, Green Chemistry, 2020, 22(22): 7946-7954. (IF = 11.034)

[10] X. Chen, H. Zhao, H. Xie, et al. Tuning the preferentially electrochemical growth of carbon at the "gaseous CO2-liquid molten salt-solid electrode" three-phase interline, Electrochimica Acta, 2019, 324: 134852. (IF = 7.336).

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[1] 一种熔盐溶剂化法制备纳米Cu2O颗粒的方法,ZL201811106493.1,授权时间:2019921日;

[2] 一种熔盐电化学插层法制备二维层状MoS2材料的方法,ZL201910085008.5,授权时间:2020414日;

[3] 一种从铜矿中直接分离铜并制备Cu2O功能材料的方法,ZL201910560111.0,授权时间:202055日;

[4] 一种熔盐电化学剥离法制备二维层状WS2材料的方法,ZL201910084979.8,授权时间:2020331日;

/ 奖励荣誉

 

[1] 2021年卓越博士奖学金、校一等奖学金;

[2] 2019博士国家奖学金、校优秀研究生、优秀员工党员;

[3] 2017年硕士国家奖学金、校优秀你研究生;

 

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