刘冠华 副教授 博士 天津市‌ 研究领域: 精细化工 研究方向: 酶-光/电偶联催化用于CO2还原、化学品合成 所在单位: 河北工业大学

基本信息

所在单位:
河北工业大学
机构细分:
化工学院
单位类型:
高等院校
职务:
副教授
职称:
副教授
最高学历:
博士
教育经历:
2009-2013,天津大学,本科
2013-2018,天津大学,博士
工作经历:
2018-2019,河北工业大学化工学院,讲师、硕导
2019-至今,河北工业大学化工学院,副教授、博导

科研能力

研究领域:
精细化工
研究方向:
酶-光/电偶联催化用于CO2还原、化学品合成
论文著作:
[1] Hao Zhao; Jialin Zhang; Yunting Liu; Xinlong Liu; Li Ma; Liya Zhou; Jing Gao; Guanhua  Liu*; Xiaoyang Yue*; Yanjun Jiang* ; Molecular Engineering and Morphology Control of Covalent  Organic Frameworks for Enhancing Activity of Metal‐Enzyme Cascade Catalysis, Advanced Science, 2024, 11(25): 2400730.
[2] Deng Xuewu, Zheng Xiaobing, Jia Feifei, Cao Cuiyao, Song Haolei, Jiang Yanjun, Liu Yunting, Liu Guanhua*(通讯作者), Li Shijie* and Wang Lihui*, Unspecific peroxygenases immobilized on Pd-loaded three-dimensional ordered macroporous (3DOM) titania photocatalyst for photo-enzyme integrated catalysis, Applied Catalysis B: Environmental, 2023, 330: 122622. (SCI I区,IF=24.319)
[3] Zhao Hao, Wang Lirong, Liu Guanhua*, Liu Yunting, Zhang Suoqing, Wang Lihui, Zheng Xiaobing, Zhou Liya, Gao Jing, Shi Jiafu* and Jiang Yanjun*, Hollow Rh-COF@COF S-Scheme Heterojunction for Photocatalytic Nicotinamide Cofactor Regeneration, ACS Catalysis, 2023, 13: 6619-6629. (SCI I区,IF= 13.700)
[4] Liu Guanhua, Wang Lirong, Yan Lihang, Zhao Hao, Li Yaoxuan, Zhou Liya, He Ying, Ma Li, Liu Yunting, Gao Jing, Jiang Yanjun, A dual-enzyme microreactor based on encapsulation and covalent bond for enzymatic electrocatalytic CO2 reduction, Chemical Engineering Journal, 2023, 475: 146186.
[5] Liu Guanhua*, Guo Leijie, Zhao Lingfeng, Zhou Liya*, Zhang Suoqing, Liu Yunting, Zheng Xiaobing, Jiang Yanjun, Gao Jing, Wang Lihui, A GO-based biocatalytic membrane prepared by one-step pressure-assisted self-assembly for micropollutants removal, Chemical Engineering Science, 2023, 275: 118740.
[6] Li Yaoxuan#, Yan Lihang#, Liu Guanhua*, Chen Huaxun, Zhao Hao, Wang Lihui, Gao Jing, Liu Yunting, Zheng Xiaobing, Jiang Yanjun*, Enhanced electroenzymatic CO2 reduction by a multifunctional ZIF-8 layer on silica nanoflower with immobilized enzyme, Chemical Engineering Journal, 2023, 466: 143198.
[7] Zhao Hao, Liu Guanhua*, Liu Yunting, Liu Xilin, Wang Hanxi, Chen Huaxun, Gao Jing, Jiang Yanjun*, Metal nanoparticles@covalent organic framework@enzymes: A universal platform for fabricating a metal–enzyme integrated nanocatalyst, ACS Applied Materials & Interfaces, 2022, 14: 2881-2892.
[8] Yan Lihang, Liu Guanhua*, Liu Jianqiao, Bai Jing, Li Yaoxuan, Chen Huaxun, Zhou Liya, Gao Jing, Jiang Yanjun*, Hierarchically porous metal organic framework immobilized formate dehydrogenase for enzyme electrocatalytic CO2 reduction, Chemical Engineering Journal, 2022, 450: 138164.
[9] Liu Guanhua, Chen Huaxun, Zhao Hao, Chen Ran, Yang Minghui, Gao Jing, Yu Fengshou, Jiang Yanjun*, Accelerating electroenzymatic CO2 reduction by immobilizing formate dehydrogenase on polyethylenimine-modified mesoporous silica,  ACS Sustainable Chemistry & Engineering, 2022, 10: 633-644.
[10] Zhao Anan, Zhang Min, Bao Yuemei, Zhao Lingfeng, Liu Guanhua*, Jiang Yanjun*, Zhang Peng, Cao Xingzhong, Loose nanofiltration membrane constructed via interfacial polymerization using porous organic cage RCC3 for dye/salt separation, Journal of Membrane Science, 2022, 664: 121081.
发明专利:
[1] 刘冠华;刘凯杰;王利荣;魏建阳;马丽;贺莹;周丽亚;刘运亭郑晓冰;姜艳军;种中空ZIF-8固定化双酶及其制备方法和应用,2025-10-03,中国,ZL 202410860430.4
[2] 刘冠华; 陈冉; 陈华勋; 杨明辉; 王泽惠; 周丽亚; 姜艳军; 高静 ; 介孔材料固定化酶进行生物电催化二氧化碳还原的方法及应用, 2024-03-19, 中国, CN202111177307.5
[3] 刘冠华; 孔悦悦; 赵浩; 蔚文琪; 姜艳军; 王圣洁; 李学聪; 刘心怡; 郑晓冰; 周丽亚 ; 利用共价有机框架材料固定铑电子媒介构建核壳空心球异质结光催化剂的制备方法及应用, 2024-04-26, 中国, CN202310174603.2
[4] 刘冠华; 姜艳军; 赵凌凤; 郭雷杰; 张锁庆; 王立晖; 沈彬; 李赫宇; 暴悦梅; 李许伟 ; 一种生物催化膜及其制备方法和应用, 2024-05-24, 中国, CN202211368218.3
[5] 刘冠华; 郭亚伟; 孙天逸; 杨浩然; 崔贺; 李子瑜; 张敏; 姜艳军; 高静 ; 梯度交联的两性离子修饰多层复合纳滤膜的制备方法及复合纳滤膜的应用, 2022-07-05, 中国, ZL202010060333.9
科研项目:
1.国家重点研发计划,2023-2028,80万元,子课题负责人
2.国家自然科学基金青年项目,2020-2022,25万元,主持
3.京津冀自然科学基金合作专项,2025.10- 2028.09,20万元,主持
3.河北省自然科学基金青年项目,2020-2022,6万元,主持
4.中国轻工业联合会教育工作分会课题,2020,主持
5.保定市科技计划项目,2024.11-2026.10,25万元,主持
6.河北工业大学元光学者启动经费,2018-2023,100万元,主持

项目合作

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