HE GUANGZHI
Title:
Highest Education: Ph.D
Phone: 62849508
Email: gzhhe@rcees.ac.cn
Homepage:
Education and Appointments:
姓名_英文:He Guangzhi 出生时间_英文:April 1983 学位_英文:Doctor 学历:Graduate student 专业技术职务_英文:Professor 重要社会和学术任职_英文:Editorial Board of Chinese Chemical Letters 学习和工作经历_英文: 2023/1 - Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Professor 2018/4 - 2023/1 Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Associate professor 2011/7 - 2018/4 Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Assistant professor 2006/9 - 2011/7 Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Environmental sciences, Doctor 2002/9 - 2006/7 China University of Geosciences, Environmental engineering, Bachelor 研究领域_英文: Environmental catalysis and air pollution control 主要科研成就和获得奖励_英文: Professor He is primarily engaged in research on environmental catalysis and air pollution control, and has published more than 80 academic papers. He has achieved a series of innovative results in the field of catalytic purification of nitrogen oxides and has published as the first/corresponding author in Sci. Adv., Nat. Commun., Angew. Chem., Environ. Sci. Technol., and other journals. Five papers have been selected as the covers by Angew. Chem. and Environ. Sci. Technol. Professor He has been selected as a youth top-north talents of “the National Ten Thousand Talent Program” and a member of the Youth Innovation Promotion Association of Chinese Academy of Sciences. He has also received the President Prize of Chinese Academy of Sciences for Excellent Ph.D. Graduates.
Research Interest:
Environmental catalysis and air pollution control
Selected Publications:
Guangzhi He, Zhihua Lian, Yunbo Yu, Yang Yang, Kuo Liu, Xiaoyan Shi, Zidi Yan, Wenpo Shan, Hong He*, Polymeric vanadyl species determine the low-temperature activity of V-based catalysts for the SCR of NOx with NH3, Sci. Adv., 2018, 4, eaau4637. Yulong Shan, Guangzhi He*, Jinpeng Du, Yu Sun, Zhongqi Liu, Yu Fu, Fudong Liu, Xiaoyan Shi, Yunbo Yu, Hong He*, Strikingly distinctive NH3-SCR behavior over Cu-SSZ-13 in the presence of NO2, Nat. Commun., 2022, 13, 4606. Guangzhi He, Jinzhu Ma, Biwu Chu, Renzhi Hu, Hao Li, Meng Gao, Yuan Liu, Yonghong Wang, Qingxin Ma, Pinhua Xie, Guoxian Zhang, Xiao Cheng Zeng*, Joseph S. Francisco*, Hong He*, Generation and release of OH radicals from the reaction of H2O with O2 over soot, Angew. Chem. Int. Ed., 2022, 61, e202201638. Meng Gao, Zhuocan Li, Guangzhi He*, Yulong Shan, Yu Sun, and Hong He*, Unveiling the origin of selectivity in the selective catalytic reduction of NO with NH3 over oxide catalysts, Environ. Sci. Technol., 2023, 57, 8426-8434. Maofan Li, Meng Gao, Guangzhi He*, Yunbo Yu, and Hong He*, Mechanistic insight into the promotion of the low-temperature NH3-selective catalytic reduction activity over MnxCe1-xOy catalysts: a combined experimental and density functional theory study, Environ. Sci. Technol., 2023, 57, 3875-3882. Zhisheng Wang, Yingfa Chen, Xiaotong Li, Guangzhi He*, Jinzhu Ma*, Hong He, Layered double hydroxide catalysts for ozone decomposition: the synergic role of M2+ and M3+, Environ. Sci. Technol., 2022, 56, 1386-1394. Guangzhi He, Meng Gao, Yue Peng, Yunbo Yu, Wenpo Shan, Hong He*, Superior oxidative dehydrogenation performance toward NH3 determines the excellent low-temperature NH3-SCR activity of Mn-based catalysts, Environ. Sci. Technol., 2021, 55, 6995-7003. Meng Gao, Guangzhi He*, Wenshuo Zhang, Jinpeng Du, Hong He, Reaction pathways of the selective catalytic reduction of NO with NH3 on the α-Fe2O3(012) surface: a combined experimental and DFT study, Environ. Sci. Technol., 2021, 55, 10967-10974. Jinzhu Ma, Yingfa Chen, Guangzhi He*, Hong He, A robust H-transfer redox mechanism determines the high-efficiency catalytic performance of layered double hydroxides, Appl. Catal. B, 2021, 285, 119806. Guangzhi He, Jinzhu Ma, Hong He*, Role of Carbonaceous Aerosols in Catalyzing Sulfate Formation. ACS Catal., 2018, 8, 3825-3832.
Supported Projects:
Youth top-north talents of “the National Ten Thousand Talent Program”, 2022.09-2025.09, Principal The National Natural Science Foundation of China, Mechanistic study on structural regulation and coupling effect of active sites of vanadia-based NH3-SCR catalysts, 22276202, 2023.01-2026.12, Principal The National Natural Science Foundation of China, Fundamental research on activation of O2 and catalytic oxidation of SO2 to secondary sulfate by soot, 21777171, 2018.01-2021.12, Principal The National Natural Science Foundation of China, Studies on the interaction mechanism of representative PFCs with the solid-water interface, 21207151, 2013.01-2015.12, Principal Project of Basic Science Center of the National Natural Science Foundation of China, Atmospheric haze chemistry, 22188102, 2022.01-2026.12, Participant Key Project of the National Natural Science Foundation, Fundamental research on high performance catalysts for NOx removal from diesel exhausts by NH3-SCR, 21637005, 2017.01-2021.12, Participant The National Key R&D Program of China, Key aftertreatment technology for NOx control of diesel vehicles, 2017YFC0211101, 2017.07-2021.06, Participant
Honors:
Youth top-north talents of “the National Ten Thousand Talent Program”, 2022 Member of the Youth Innovation Promotion Association of Chinese Academy of Sciences, 2019 President Prize of Chinese Academy of Sciences for Excellent Ph.D. Graduates, 2011
TOP