信息来源: 发布日期:2026-04-03
通讯地址:福建省晋江市福州大学先进制造学院综合办公楼316 邮 编:362251 Email:zhangqy201704@163.com
2015.09-2021.03 福州大学材料学专业(硕转博),获博士学位2021.08-至今 福州大学先进制造学院先进材料系,讲师/硕士生导师
泉州市第三层次人才,福建省级C类人才、省工信厅专家库成员 中国环境科学学会会员,教育部学位论文评审专家 Environmental research, Cellulose, Diamond & Related Materials等国际期刊审稿人
主要从事泡沫炭基材料、树脂复合材料、环境吸附材料、电极材料等研究
福建省高校测试中心贵重仪器设备开放测试基金,2025.11-2026.11 主持 福州大学研究生教育教学改革项目,2024.11-2026.11 主持 福州大学科研启动基金,2021.11-2024.01 主持 福州大学贵重仪器设备开放课题基金,2022.01-2023.06 主持 自然资源部海洋第三研究所开放课题基金,2022.09-2024.09 主持 福建省中青年教师教育科研项目(科技类),2022.12-2025.05 主持 国家自然科学基金面上项目(51872049),2019.01-2022.12 项目参与 国家自然科学基金面上项目(51272045),2013.01-2016.12 项目参与
[1] Zhang Q, Zhai Y, Chen S, Chen H, Lin Q*. Constructing a novel hierarchical MnO2/ultrathin-wall graphitized porous carbon composite for the efficient removal of Pb2+. Diamond & Related Materials, 2025, 159: 112896.
[2] Chen S, Zhai Y, Hu Y, Tian F, Zhang Q*. Facile fabrication of polyaniline/graphite paper-based electrodes for high-performance flexible supercapacitor. Diamond & Related Materials, 2025, 160: 113014.
[3] Zhang Q, Chen S, Chen H, Hu Y, Lin Q*. A novel oxidized hierarchical porous carbon with vesicule-like ultrathin graphitic walls for efficient removal of anionic and cationic dyes. Environmental Research, 2025, 267: 120702.
[4] Zhang Q, Bi T, Chen H, Hu Y, Tian F, Lin Q*, Petroleum residue-based ultrathin-wall graphitized mesoporous carbon and its high-efficiency adsorption mechanism. Diamond & Related Materials, 2024, 148: 111497.
[5] Zhang Q, Wang X, Chen H, Tian F, Lin Q*. Eco-friendly and magnetic sucrose-derived Fe-containing mesoporous carbon composites for high-efficiency Congo red adsorption and supercapacitor applications. Diamond & Related Materials, 2023, 139: 110268.
[6] Zhang Q, Wu R, Zhou Y, Lin Q*, Fang C. A novel surface-oxidized rigid carbon foam with hierarchical porous structure for efficient removal of malachite green and lead ion. Journal of Materials Science & Technology, 2022, 103: 15-28.
[7] Wang Z, Deng S, Zhang Q*, Li J, Lin Q*, Effects of carbothermal reduction of iron oxide on microstructures and electrochemical properties of the carbon foams. Journal of Alloys and Compounds, 2022, 890: 161804.
[8] Zhang Q, Cheng T, Lin Q*, Fang C. Facile preparation of robust dual MgO-loaded carbon foam as an efficient adsorbent for malachite green removal. Environmental Research, 2021, 195: 110698.
[9] Zhang Q, Li J, Lin Q*, Fang C. A stiff ZnO/carbon foam composite with second-level macroporous structure filled ZnO particles for heavy metal ions removal. Environmental Research, 2020, 188: 109698.
[10] Zhang Q, Lin Q*, Zhang X, Chen Y. A novel hierarchical stiff carbon foam with graphene-like nanosheet surface as the desired adsorbent for malachite green removal from wastewater. Environmental Research, 2019, 179: 108746.
[11] Zhang Q, Mu Y, Lin Q*, Chen Y, Fang C, Xiong L. Fabrication and formation mechanism of carbon foam with two-level cell structure. Journal of Analytical and Applied Pyrolysis, 2018, 129: 150-153.
[12]一种 B、N、Fe、O 多元共掺杂型多孔炭基材料,发明专利,CN119706803A
[13]一种牡蛎壳/碳微球复合吸附材料的制备方法,发明专利,CN117531476A
[14]一种改善泡沫炭表面亲油性的方法,发明专利,CN107640755A
[15]一种高比表面积活性泡沫炭及制备方法,发明专利,CN107601500A
[16]一种超级电容器用泡沫块状活性炭电极材料的制备方法,发明专利,CN107887175A
[17]一种丙烯酸异氰酸酯交联的大豆油基树脂/纤维复合材料,发明专利,CN104786314B
[18]一种异氰酸酯交联的大豆油基树脂/天然纤维复合材料,发明专利,CN104788733B
湖南省第十三届创新学术论坛优秀论文二等奖上海市先进材料学术论坛优秀论文三等奖湖南省高校材料学科先锋论坛优秀论文优胜奖博士特等奖学金、综合一等奖学金
多孔炭基材料,高分子复合材料,环境材料,新能源材料等
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