
个人简介
冯超,博士、学术教授、硕士生导师,山东科技大学“菁英计划”A类人才,山东省青创团队带头人。近年来一直从事环境催化和能源化工方面研究,对在非贵金属氧化物基催化剂的合成及作用机理研究,多功能耦合位点催化剂的设计合成、催化剂活性位点的构筑与识别、催化反应作用机制研究方面积累了丰富的研究经验。目前在Chinese Journal of Catalysis、Applied Catalysis B: Environmental and Energy、Advanced Materials、National Science Review等国际权威期刊发表SCI高水平论文96篇,EI论文5篇,会议论文3篇,专利4项;其中,本人一作或通讯SCI高水平论文52篇,累计影响因子630.6。任《精细化工》《洁净煤技术》青年编委,《International Journal of Molecular Sciences》客座编辑助理,担任多个期刊杂志审稿人。与中国石油大学(华东)、北京化工大学、北京工业大学、大连理工大学、安徽师范大学、青岛科技大学,中国科学院青岛能源所、中国科学院兰州物化所等国内高校及科研院所有长期紧密合作。
研究方向
(1)大气污染物挥发性有机物(VOCs)催化脱除;
(2)生物质的加氢脱氧转化与利用(与中国科学院青岛能源所合作);
(3)CO2还原催化剂的设计及机理探究;
(4)DFT计算(VASP)。
承担项目
(1)国家自然科学基金青年项目,2025-01-01 至 2027-12-31,30万元,主持;
(2)山东省自然科学基金青年项目,2026-01-01 至 2028-12-31,13万,主持;
(3)山东省高等学校青创科技支持计划项目,20万,主持;
(4)山东科技大学“菁英计划”A类人才引进项目,40万,主持;
(5)新型大豆检测试纸的研发(企业横向),10万,2025-10-01至2028-9-30,主持;
(6)中国博士后科学基金面上项目,2023-07-1至2024-12-31,8万,主持;
(7)青岛市自然科学基金青年项目,2023-07-1至2025-6-31,10万,主持;
(8)青岛博士后资助项目,2022-09-29至2024-09-29,5万,主持;
(9)国家自然科学基金面上项目,2025-01-01至2028-12-31,50万元,参与;
(10)国家自然科学基金面上项目,2022-01-01至2025-12-31,60万元,参与。
个人成果
(1)Chao Feng, Chong Chen, Gaoyan Xiong, Di Yang, Zhong Wang, Yuan Pan*, Zhaoyang Fei, Yukun Lu, Yunqi Liu*, Runduo Zhang, Xuebing Li*. Cr-doping regulates Mn3O4 spinel structure for efficient total oxidation of propane: Structural effects and reaction mechanism determination, Applied Catalysis B: Environmental and Energy, 2023, 328, 122528. (SCI一区,IF=19.7,独立一作,高被引论文);
(2)Chao Feng, Qianqian Gao, Gaoyan Xiong, Yanfei Chen, Yuan Pan*, Zhaoyang Fei, Yanpeng Li, Yukun Lu, Chenguang Liu, Yunqi Liu*. Defect engineering technique for the fabrication of LaCoO3 perovskite catalyst via urea treatment for total oxidation of propane. Applied Catalysis B: Environmental and Energy, 2022, 304, 121005. (SCI一区,IF=19.7,独立一作,高被引论文);
(3)Chao Feng*, Gaoyan Xiong, Chong Chen, Yan Lin*, Zhong Wang, Yukun Lu, Fang Liu, Xuebing Li, Yunqi Liu, Runduo Zhang*, Yuan Pan*. Highly dispersed Pt/Co3O4 catalyst constructed by vacancy defect inductive effect for enhanced catalytic propane total oxidation, Chinese Journal of Catalysis, 2025, 75, 21-33. (SCI一区,IF=17.2,独立一作);
(4)Ronghui Liu1, Chao Feng1, Pengfei Wu*, Yuzhuo Sun, Zhaoqin Chu, Jingtian Hu, Wenxing Chen, Lingling Guo*, Qing Huang, Degao Wang*. Improving conversion kinetics of sodium polysulfides through electron spillover effect with V/Co dual - atomic site anchoring on N-doped MXene. Advanced Materials, 2025, 2501371. (SCI一区,IF=29.1,共同一作);
(5)Xiuzi He1, Chao Feng1, Fang Dong*, Guodong Zhang, Haitao Zhang, Yong Ding, Zhicheng Tang*. Ti-vacancy-mediated construction of Ru0 -Ov -Ti3+ interfacial sites for high-performance ammonia decomposition. Advanced Functional Materials, 2026, 36, 48, 75733. (SCI一区,IF=19.9,共同一作);
(6)Taisan Xiang, Dengfeng Dai, Xin Li, Dandan Liu*, Chao Feng*, Pengcheng Dai, Liangjun Li, Xin Gu, Yunqi Liu*. In situ self-derived Co/CoOx active sites from Co-TCPP for the efficient hydrogenolysis of furfuryl alcohol to 1,5-pentanediol. Applied Catalysis B: Environmental and Energy, 2024, 348, 123841. (SCI一区,IF=19.7,联合通讯);
(7)Haimei Xu1, Chao Feng1, Yunzhao Fan1, Huawei Geng, Qisong Yi, Xiaoning Li, Yameng Fan, Yibo Ma, Baohua Jia, Yuanshuai Liu*, Valentin Valtchev*, Tianyi Ma*. Strong metal-support interaction induced by Pt-O-Bi bonding in mesoporous anatase TiO2 for base-free catalytic biomass valorisation. National Science Review, 2025, 12(10), 327. (SCI一区,IF=18.1,共同一作);
(8)Minmin Wang, Chao Feng*, Xin Zhang, Ping He, Houyu Zhu, Yunqi Liu*, Yuan Pan*. Coordination structure regulation of Pt-NxOy-S1 catalytic sites for promoting high-efficiency hydrogen evolution. Journal of Energy Chemistry, 2025, 102, 661-669. (SCI一区,IF=15.6,联合通讯);
(9)Da Wang, Guangbo Liu*, Chuanhui Zhang, Chao Feng*, Jinhu Wu, Song Chen, Noritatsu Tsubaki*. Revealing the underlying causes of the high CO2 selectivity in Fischer-Tropsch to olefins. ACS Catalysis, 2025, 15, 7028-7039. (SCI一区,IF=13.6,联合通讯);
(10) Lin Li1, Chao Feng1, Haimei Xu, Ping He, Qisong Yi, Junxiang Jiang, Lu Lin*, Jin Hou*, Yuanshuai Liu*. Base-free oxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid boosted by Ru-Na synergy in Ru/Na-Y zeolite catalysts. Chemical Engineering Journal, 2026, 527, 171491. (SCI一区,IF=12.5,共同一作)。
招生专业:化学工程与技术、化学工程
邮 箱:fengchao@sdust.edu.cn