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个人简介

赵俊锋,工学博士,民革党员,1983年生,江苏盐城人。2009.6毕业于南京工业大学材料学专业,获硕士学位;2019.6毕业于南京大学材料科学与工程专业,获工学博士学位;科研上主要从事二次锂电池材料、环境净化材料等新型功能材料的研究。主持完成海安南京大学高新技术研究院开放课题、江苏省新型功能材料重点实验室开放课题的研究,目前主持企业横向课题1项,参与多项省级以上科研项目和横向合作项目。以第一作者/通讯作者在《Journal of Power Sources》、《Journal of Alloys and Compounds》、《Applied Surface Science》、《Ceramics International》等国内外学术刊物上发表学术论文20余篇。申请国家发明专利4项(授权1项)。 主要承担的教学课程 敏感材料与器件,实验室安全与环保、材料科学基础实验、材料性能试验等。专利 赵俊锋,陈建华,殷仕龙,杨刚,查佳晨,杨成. 一种固载化纳米MgO吸附材料的制备, 授权号:CN 105498679 B 赵俊锋, 张子峰;桑志宏. 利用数控激光在不锈钢表面生成彩色超疏水涂层的方法, 公开号:CN109825834A 赵俊锋, 张子峰;桑志宏. 一种利用数控激光在不锈钢表面生成3D立体图像的方法, 公开号:CN109807470A 赵俊锋, 邵昊天, 陆洪彬, 张子峰, 桑志宏. 一种水性高硬度防指纹涂料的制备方法,公开号:CN 109777256 A

研究领域

1. 二次锂电池材料 2. 环境净化材料

近期论文

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1. 企业横向项目:具有高VOCs吸附性能的分级多孔碳材料研发 (2020.4-2021.4) 2. 海安南京大学高新技术研究院开放课题:分级多孔 g-C3N4的可控构筑及其吸附/光催化协同去除 Cr(VI)的研究 (2018.9-2020.9) 3. 江苏省新型功能材料重点实验室项目:染料敏化太阳能电池光阳极的制备与性能研究 (2010.9-2012.9) 主要发表论文 (1)Junfeng Zhao, Yuancui Weng, Sailu Xua, Ahmed Shebl, Xuemin Wen, Gang Yang*, Protein-mediated synthesis of Fe3N nanoparticles embedded in hierarchical porous carbon for enhanced reversible lithium storage, Journal of Power Sources, 2020, 464: 228246 (SCI 1区) (2)Junfeng Zhao*, Xuemin Wen, Huashan Xu, Yuancui Weng, Yanqiu Chen, Fabrication of recyclable magnetic biosorbent from eggshell membrane for efficient adsorption of dye, Environmental Technology, 2020, doi.org/10.1080/09593330.2020.1760355 (SCI 4区) (3)Junfeng Zhao*, Kou Yan, Xuemin Wen, Huashan Xu, Solution combustion synthesis of porous MgO nanostructures for efficient removal of Congo red, Journal of Nanoscience and Nanotechnology, 2020, 20: 810-818 (SCI 4区) (4)Junfeng Zhao, Xuemin Wen, Huashan Xu, Yuancui Wen, Hongbin Lu, Xiangkang Meng, Salting-out and salting-in of protein: A novel approach toward fabrication of hierarchical porous carbon for energy storage application, Journal of Alloys and Compounds, 2019, 788: 397-406. (SCI 2区) (5)Junfeng Zhao*, Chenglong Lei*, Youwei Du, Influence of precursor and salt assisted calcination on magnetic properties of Sr-ferrites, Journal of materials science: materials in electronics 2019, 30:12597-12602.(SCI 3区) (6)Junfeng Zhao, Junaid Ali Syed, Xuemin Wen, Hongbin Lu, Xiangkang Meng*, Green synthesis of FeS anchored carbon fibers using eggshell membrane as a bio-template for energy storage application, Journal of Alloys and Compounds, 2019, 777: 974-981 (SCI 2区) (7) Junfeng Zhao, Jiachen Zha, Hongbin Lu, Cheng Yang, Kou Yan, Xiangkang Meng*, Cauliflower-like Ni/NiO and NiO architectures transformed from nickel alkoxide and their excellent removal of Congo red and Cr(VI) ions from water, RSC Advances, 2016, 6: 103585-103593 (SCI 3区) (8)Junfeng Zhao, Ya Shao, Jiachen Zha, Haiying Wang, Yang Yang, Shidong Ruan, Gang Yang*, Jianhua Chen, Large-scale preparation of crinkly NiO layers as anode materials for lithium-ion batteries, Ceramics International, 2016, 42: 3479-3484 (SCI 2区) (9)Junfeng Zhao*, Junjie Zhao, Yu Qian, Xiali Zhang, Feifei Zhou, Hongbin Lu, Jianhua Chen, Xuhong Wang, Wencong Yu, Solution combustion synthesis of calcium phosphate particles for controlled release of bovine serum albumin, Materials Science and Engineering C, 2015, 50: 194-200 (SCI 2区) (10) Junfeng Zhao*, Yang Tan, Kang Su, Junjie Zhao, Chen Yang, Lingling Sang, Hongbin Lu, Jianhua Chen, A facile homogeneous precipitation synthesis of NiO nanosheets and their application in water treatment, Applied Surface Science, 2015, 337: 111-117 (SCI 2区) (11)Junfeng Zhao*, Junjie Zhao, Jianhua Chen, Xuhong Wang, Zhida Han, Yuhong Li, Rietveld refinement of hydroxyapatite, tricalcium phosphate and biphasic materials prepared by solution combustion method, Ceramics International, 2014, 40: 3379-3388 (SCI 2区) (12)Junjie Zhao, Xiaochen Dong, Mengmeng Bian, Junfeng Zhao*, Yao Zhang, Yue Sun, Jianhua Chen, Xuhong Wang, Solution combustion method for synthesis of nanostructured hydroxyapatite, flourapatite and chlorapatite, Applied Surface Science, 2014, 314: 1026-1033 (SCI 2区) (13)Junfeng Zhao*, Zhida Han, Hongbin Lu, Xuhong Wang, Jianhua Chen, Synthesis and photoluminescence properties of ZnO powder by solution combustion method, Journal of Materials Science: Materials in Electronics, 2011, 22:1361-1365 (SCI 3区)

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