胡传刚 照片

胡传刚

教授 博导

所属大学: 北京化工大学

所属学院: 化学工程学院

邮箱:
chuangang.hu@mail.buct.edu.cn

个人主页:
https://chem.buct.edu.cn/2021/0226/c13255a175501/page.htm

个人简介

教育背景 2011.09-2015.07,博士,北京理工大学 2004.09-2011.07,学士、硕士,河南师范大学 工作经历 2020.12-至今,教授,北京化工大学 2019.09-2020.09,研究助理,澳大利亚新南威尔士大学 2015.08-2019.08,博士后,美国凯斯西储大学

研究领域

1.先进碳基材料合成(异质结构、分级结构、杂化结构、高度有序结构碳材料)与催化应用; 2.纳米科学用于能源转换与储存(各类电化学器件、金属-空气电池、以及集成器件等)

近期论文

L. Zhao, Q. Cai Bao. Mao, J. Mao,* H. Dong, Z. Xiang, J. Zhu,* R. Paul, D. Wang, Y. Long, L. Qu,* R. Yan, L. Dai,* Chuangang Hu*, A universal approach to dual-metal-atom catalytic sites confined in carbon dots for various target reactions, Proc. Natl. Acad. Sci. USA (PNAS), 2023, 120, e2308828120.IF=11.1 F. Ye, S. Zhang, Q. Cheng, Y. Long, D. Liu, R. Paul, Y. Fang*, Y. Su*, L. Qu, L. Dai, Chuangang Hu*. The role of oxygen-vacancy in bifunctional indium oxyhydroxide catalysts for electrochemical coupling of biomass valorization with CO2 conversion, Nat. commun., 2023, 14, 2040. IF=16.6 Y. Long, J. Lin, F. Ye, W. Liu, D. Wang, Q. Cheng, R. Paul, D. Cheng, B. Mao*, R. Yan, L. Zhao, D. Liu, F. Liu*, and Chuangang Hu*, Tailoring the atomic-local environment of carbon nanotube tips for selective H2O2 electrosynthesis at high current densities, Adv. Mater., 2023, 2303905. IF=29.4 Chuangang Hu#, R. Paul#, Q. Dai, L. Dai*, Carbon-based metal-free electrocatalysts: from oxygen reduction to multifunctional electrocatalysis. Chem. Soc. Rev., 2021, 50, 11785. IF= 46.2 P. Cui,# L. Zhao,# Y. Long, L. Dai*, Chuangang Hu*. Carbon-based electrocatalysts for acidic oxygen reduction reaction, Angew. Chem. Int. Ed., 2023, 62, e2022182. IF=16.6 F. Ye, L. Gong, Y. Long, S. Talapaneni, L. Zhang, Y. Xiao, D. Liu*, Chuangang Hu*, L. Dai*. Topological defect‐rich carbon as a metal-free cathode catalyst for high-performance Li-CO2 batteries. Adv. Energy Mater., 2021, 11, 2101390. IF= 27.8 X. Liu, P. Kumar, Q. Chen, L. Zhao, F. Ye, X. Ma, D. Liu, X. Chen*, L. Dai*, Chuangang Hu*. Carbon nanotubes with fluorine-rich surface as metal-free electrocatalyst for effective synthesis of urea from nitrate and CO2, Appl. Catal. B: Environ., 2022, 316, 121618. IF=24.319 Chuangang Hu, L. Gong, Y. Xiao, Y. Yuan, N. Bedford, Z. Xia, L. Ma, T. Wu, Y. Lin, J. Connell, R. Shahbazian-Yassar, J. Lu, K. Amine, L. Dai*, High-performance, Long-life, rechargeable Li-CO2 batteries based on a 3D holey graphene cathode implanted with single iron atoms. Adv. Mater., 2020, 32, 1907436. IF= 29.4 Chuangang Hu*,Y. Lin, J. Connell, H. Cheng, Y. Gogotsi, M. Titirici, L. Dai*. Carbon-based metal-free catalysts for energy storage and environmental remediation, Adv. Mater., 2019, 31, 1806128. IF= 29.4 Chuangang Hu, L. Dai*. Doping of carbon materials for metal-free electrocatalysis. Adv. Mater., 2018, 31, 1804672. IF= 29.4 Chuangang Hu,J. Qu, Y. Xiao, S. Zhao, H. Chen, L. Dai.Carbon nanomaterials for energy and biorelated catalysis: recent advances and looking forward, ACS Cent. Sci., 2019, 5, 389. IF= 18.2 Chuangang Hu, L. Dai*. Carbon-based metal-free catalysts for electrocatalysis beyond the ORR. Angew. Chem. Int. Ed., 2016, 55, 2. IF= 16.6 Chuangang Hu, L. Dai*. Multifunctional carbon-based metal-free electrocatalysts for simultaneous oxygen reduction, oxygen evolution, and hydrogen evolution. Adv. Mater., 2017, 29, 1604942. IF= 29.4 Chuangang Hu, H. Cheng, Y. Zhao, Y. Hu, Y. Liu, L. Dai, L. Qu*. Newly-designed complex ternary Pt/PdCu nanoboxes anchored on three-dimensional graphene framework for highly efficient ethanol oxidation. Adv. Mater.,2012, 24, 11736. IF= 29.4 Chuangang Hu, Y. Zhao, H. Cheng, Y. Wang, Z. Dong, C. Jiang, X. Zhai, L. Jiang, L. Qu*. Graphene microtubings: controlled fabrication and site-specific functionalization. Nano Lett.,2012, 12, 5879. IF= 10.8 Chuangang Hu, L. Song, Z. Zhang*, N. Chen, Z. Feng, L, Qu*. Tailored graphene systems for unconventional applications in energy conversion and storage devices. Energy Environ. Sci.,2015, 8, 31. IF= 32.5 Chuangang Hu, G. Zheng, F. Zhao, H. Shao, Z. Zhang, N. Chen, L. Jiang, L. Qu*. A powerful approach to functional graphene hybrids for high performance energy-related applications. Energy Environ. Sci., 2014, 7, 3699. IF=32.5 Chuangang Hu, J. Xue, L. Dong, Y. Jiang, X. Wang, L. Qu*, L. Dai*. Scalable preparation of multifunctional fire-retardant ultralight graphene foams. ACS Nano,2016, 10, 1325. IF=17.1 Chuangang Hu, X. Chen, Q. Dai, M. Wang, L. Qu*, L. Dai*. Earth-abundant carbon catalysts for renewable generation of clean energy from sunlight and water. Nano Energy, 2017, 41, 367. IF=17.6 Chuangang Hu, Y. Xiao, Y. Zou, L. Dai*. Carbon-based metal-free electrocatalysis for energy conversion and storage. Electrochem. Energy Rev., 2018, 1, 84. IF=31.3