- 工学院
邓邦为
邓邦为,湖北宜昌人,博士/副研究员/硕导,九三学社社员。2019年博士毕业于中国科学院成都有机化学研究所(导师:瞿美臻研究员、彭工厂研究员),博士期间主要从事三元锂离子电池电解液添加剂开发与机理研究。随后分别在电子科技大学基础与前沿研究院(博士后,合作导师:董帆教授,国家杰青)、电子科技大学长三角研究院(湖州)等科研机构从事环境与能源电催化、CO2捕集与资源化利用等方面研究。
目前主持国家自然科学青年基金、浙江省自然科学基金探索项目、中国气象局重点实验室开放课题等项目等6项,参与国家重点研发计划、浙江省“尖兵”“领雁”攻关研发计划等3项,曾入选校级青年领军人才计划,以第一或通讯作者在Angew. Chem., ACS Nano, ACS Catalysis, Chemical Science, Science China Chemistry, Chinese Journal of Catalysis等期刊发表SCI论文15篇,ESI高被引论文2篇,中国化学会热点论文1篇,VIP论文1篇,总被引用2000余次,担任Frontiers in Nanotechnology的客座副主编。
研究方向:
1.高时空分辨原位电化学谱学与分子电化学机理;
2.大电流电催化反应器设计开发(MEA、flow cell);
3.面向应用的CO2捕集与转化一体化系统与装备开发;
科研项目:
[1] 国家自然科学基金青年项目,22406020,铜基催化剂CO2电还原的动态活性位点解析:被忽视的碳载体效应,2025-01-01至 2027-12-31,在研,主持;
[2] 浙江省自然科学基金探索青年项目,LQ24B070010,原位重构的铜不对称活性中心促进电催化C-N偶联机制研究,2024-01-01至2026-12-31,在研,主持;
[3] 中国气象局气候资源经济转化重点开放实验室开放课题,2024004K,双碳目标下可再生绿电驱动的二氧化碳电催化转化技术及经济价值核算方法,2024-06-01至2026-05-31,在研,主持;
[4] 湖州市自然科学基金,2022YZ22,含氮污染物与CO2(CO)共电催化还原构建C-N耦合机制研究,2022-01-01至2024-12-31,已结题,主持;
[5] 企业横向,超临界CO2发泡高温隔热硅酸盐混凝土制备工艺开发,2024.11-2026.11,主持;
[6] 国家重点研发计划子课题, 2020YFA0710003, 低能耗、低碳排放氮气-水光电催化合成氨关键技术, 2021-01-01至2025-12-31,676万元,在研,参与,7/31;
[7] 浙江省“尖兵”“领雁”研发攻关计划,2023C03017,二氧化碳捕集与资源化转化技术和装备研发,2023-01-01 至 2025-12-31,1308万元,在研,参与,32/50;
[8] 浙江省“尖兵领雁+X”研发攻关计划,2024C03136,难降解低碳氮比废水净化与资源化装备研发及应用示范,2024-01-01 至 2026-12-31,970万元,在研,参与,7/44;
发表论文:
1.Bangwei Deng; Ming Huang; Kanglu Li; Xiaoli Zhao; Qin Geng; Si Chen; Hongtao Xie; Xing‘an Dong; Hong Wang; Fan Dong*, The Crystal Plane is not the Key Factor for CO2‐to‐Methane Electrosynthesis on Reconstructed Cu2O Microparticles. Angewandte Chemie International Edition 2022, 61 (7), e202114080.(VIP论文,中科院1区top)
2.Bangwei Deng; Ming Huang; Xiaoli Zhao; Shiyong Mou; Fan Dong*, Interfacial Electrolyte Effects on Electrocatalytic CO2 Reduction. ACS Catalysis 2022, 12 (1), 331-362. (ESI高被引论文,中科院1区top,IF=13.1)
3.Bangwei Deng*; Xueyang Zhao; Yizhao Li; Ming Huang; Shihan Zhang; Fan Dong*, Active site identification and engineering during the dynamic evolution of copper-based catalysts for electrocatalytic CO2 reduction. Science China Chemistry 2023, 66 (1), 78-95. (中科院1区top,IF=9.7)
4.Bangwei Deng*; Daming Sun; Xueyang Zhao; Lili Wang; Feiyu Ma; Yizhao Li; Fan Dong*, Accelerating acidic CO2 electroreduction: strategies beyond catalysts. Chemical Science 2024, 15 (37), 15087-15108. (中科院1区top,IF=7.4)
5.Bangwei Deng; Daming Sun; Qi Wan*; Hao Wang; Tao Chen; Xuan Li; Meizhen Qu*; Gongchang Peng*, Review of Electrolyte Additives for Ternary Cathode Lithium-ion Battery(锂离子电池三元正极材料电解液添加剂的研究进展 ). Acta Chimica Sinica(化学学报) 2018, 76 (4), 259-277.(中科院2区,中国化学会热点论文)
6.Bangwei Deng; Hao Wang; Wujie Ge; Xiang Li; Xinxiu Yan; Tao Chen; Meizhen Qu*; Gongchang Peng*, Investigating the influence of high temperatures on the cycling stability of a LiNi0.6Co0.2Mn0.2O2 cathode using an innovative electrolyte additive. Electrochimica Acta 2017, 236, 61-71.(中科院2区)
7.Bangwei Deng; Jianbin Li; Huimin Shang; Wenjing Liu; Qi Wan; Mianzhong Chen; Meizhen Qu*; Gongchang Peng*, Improving cyclic stability of LiNi0.6Co0.2Mn0.2O2-SiOx/graphite full cell using tris(trimethylsilyl)phosphite and fluoroethylene carbonate as combinative electrolyte additive. Ionics 2020, 26 (5), 2247-2257.
8.Bangwei Deng; Hao Wang; Xiang Li; Yan Ding; Daming Sun; Jun Ma; Mianzhong Chen; Tao Chen; Feng Gao; Meizhen Qu*; Gongchang Peng*, Effects of Charge Cutoff Potential on an Electrolyte Additive for LiNi0.6Co0.2Mn0.2O2–Mesocarbon Microbead Full Cells. Energy Technology 2019, 7 (4), 1800981.
9.Ming Huang#; Bangwei Deng#(共一); Xiaoli Zhao; Zheye Zhang; Fei Li; Kanglu Li; Zhihao Cui; Lingxuan Kong; Jianmei Lu; Fan Dong*; Lili Zhang*; Peng Chen*, Template-Sacrificing Synthesis of Well-Defined Asymmetrically Coordinated Single-Atom Catalysts for Highly Efficient CO2 Electrocatalytic Reduction. ACS Nano 2022, 16 (2), 2110-2119. (ESI高被引论文,中科院1区top,IF=16.6)
10.Xianlong Lu; Lili Wang; Xueyang Zhao; Binbin Pan; Zhendong Li; Xiangfei Du; Shihan Zhang*; Fan Dong*; Bangwei Deng*, Unlocking asymmetric C-C coupling pathways on commercial Cu catalysts via Cu (100) grain boundaries for efficient and durable CO electroreduction. Chinese Journal of Catalysis 2025, 76 (9), 198-209. (中科院1区top,IF=17.7)
11.Qingqing Ye; Xueyang Zhao; Ruiben Jin; Fan Dong; Hongtao Xie*; Bangwei Deng*, Advances and challenges in membrane electrode assembly electrolyzers for CO2 reduction. Journal of Materials Chemistry A 2023, 11 (40), 21498-21515. (中科院2区,IF=9.5)
12.Feiyu Ma; Xianlong Lu; Xueyang Zhao; Lili Wang; Zhendong Li; Bangwei Deng*; Fan Dong, Interface optimization and process scale-up study of electrocatalytic reduction of CO2 to CO in acidic flow electrolyzers. Energy Environmental Protection, 2024, 38 (6), 151−159.
13.Xianlong Lu#; Lili Wang#; Hongtao Xie; Zhendong Li; Xiangfei Du; Bangwei Deng*, Ge4+ Stabilizes Cu1+ Active Sites to Synergistically Regulate the Interfacial Microenvironment for Electrocatalytic CO2 Reduction to Ethanol. Applied Sciences 2025, 15 (21), 11420.
14.Lili Wang#; Xianlong Lu#; Bangwei Deng*, Hierarchical CuO Nanorods via Cyclic Voltammetry Treatment: Freestanding Electrodes for Selective CO2-to-Formate Conversion. Nanomaterials 2025, 15 (17), 1349.
15.Xuemei Wang; Xi Zhou; Ruiben Jin; Tianqi Tan; Hao Ma; Ruimei Fang; Bangwei Deng*; Fan Dong*, Defect-poor BaSn(OH)6 enhanced charge separation for efficient photocatalytic degradation of toluene. Journal of Environmental Sciences 2023, 134, 86-95.
授权专利:
1、李怡招,谢洪涛,陈思,邓邦为,董帆,一种二氧化碳吸附剂及其制备方法,发明专利,2022年7月29日,ZL 202210324811.1
2、李怡招,邓邦为,谢洪涛,于洋洋,陈侣存,董帆,一种由石硫合剂残渣制备二氧化碳吸附剂的方法,2022年10月25日,ZL 202211310014.4
获奖及荣誉:中国发明协会,发明创业奖项目奖,二等奖(2025),排第1
联系方式:bwdeng@uestc.edu.cn