
基本信息:
姓名:姚立博
职称:教授
E-mail: yaolibo915@njtech.edu.cn
工作地点:弘毅楼403-3
学习工作经历:
04/2024-至今, 南京工业大学,化工学院/材料化学工程全国重点实验室,教授(江苏特聘教授)
12/2024-至今, 苏州实验室,能源环境材料研究部
08/2021-01/2024,美国密歇根大学,化学系/化工系,博士后
08/2017-08/2021,美国阿克伦大学,化学与分子生物工程,博士
09/2014-06/2017,中国石油大学(北京),化学工程与技术,硕士
09/2010-06/2014,中国石油大学(华东),化学工程与工艺,学士
研究方向:
1. 碳、氮小分子(CO2、NO3-等)的电催化转化
2. 膜电极电解槽开发、放大与工艺集成
3. 基于多物理场耦合的电解槽仿真模拟
(课题组隶属于化工学院、材料化学工程全国重点实验室、苏州实验室,每年招收3-5名化工、材料、化学等学科的研究生)
代表性研究成果:
1. Yao, L.; King, J.; Wu, D.; Ma, J.; Li, J.; Xie, R.; Chuang, S.S.C.; Miyoshi, T,; Peng, Z. Non-thermal Plasma-assisted Rapid Hydrogenolysis of Polystyrene to High Yield Ethylene. Nat. Commun. 2022, 13(1), 885.
2. Yao, L.; Ding, J.; Cai, X.; Liu, L.; Singh, N.; McCrory, C.C.L.; Liu, B., Unlocking the Potential for Methanol Synthesis via Electrochemical CO2 Reduction Using CoPc-Based Molecular Catalysts. ACS Nano 2024, 18(33), 21623–21632.
3. Yao, L.; Rivera-Cruz, K. E.; Zimmerman, P. M.; Singh, N.; McCrory, C. C. L. Electrochemical CO2 Reduction to Methanol by Cobalt Phthalocyanine: Quantifying CO2 and CO Binding Strengths and Their Influence on Methanol Production. ACS Catal. 2024, 14(1), 366–372.
4. Yao, L.; Pan, Y.; Wu, D.; Bentalib, A.; Li, J.; Liu, B.; Peng, Z. Balancing CO Chemisorption with Hydrogen Electrochemical Adsorption to Pt Alloy Catalyst for Improving Direct CO Reduction to Formaldehyde. Chem. Eng. J. 2022, 446, 137131.
5. Yao, L.; Shen, X.; Pan, Y.; Peng, Z. Synergy between Active SSites of Cu-In-Zr-O Catalyst in CO2 Hydrogenation to Methanol. J. Catal. 2019, 372, 74–85.
6. Yao, L.; Pan, Y.#; Shen, X.; Wu, D.; Bentalib, A.; Peng, Z. Utilizing Hydrogen Underpotential Deposition in CO Reduction for Highly Selective Formaldehyde Production under Ambient Conditions. Green Chem. 2020, 22(17), 5639-5647.
7. Yao, L.; Yin, C.; Rivera-Cruz, K. E.; McCrory, C. C. L.; Singh, N. Translating Catalyst–Polymer Composites from Liquid to Gas-Fed CO2 Electrolysis: A CoPc-P4VP Case Study. ACS Appl. Mater. Interfaces. 2023, 15(26), 31438–31448.