刘文芳
作者:
Menglei Mao1;Feixue Sun1;Ruqing Chong1;Rui Gao1;Qiyong Liao1;Zihui Meng1;Xinlong Fan1;Wenfang Liu1;
出处: Separation and Purification Technology 2024 Vol.329 P125144
摘要: Ti3C2Txas a typical MXene material has a multilayer structure similar to accordion, whose interlayer spacing and spec ...
作者:
Rui Gao1;Qiyong Liao1;Feixue Sun1;Ruqing Chong1;Zihui Meng1;Wenfang Liu1;
出处: Microporous and Mesoporous Materials 2024 Vol.365 P112890
摘要: Efficient regeneration of nicotinamide adenine dinucleotide (NADH) is of great significance for the application of oxidoreductase-catalyzed reactions. ...
作者: Liao, Qiyong1; Gao, Rui1; Sun, Feixue1; Chong, Ruqing1; Meng, Zihui1; Liu, Wenfang1 (1School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Liangxiang Higher Education Park, Fangshan District, Beijing; 102488, China)
出处: Journal of Cleaner Production 2024
作者: Liu,Wenfang1;Chen,Chongan1;Yang,Guoyu1; (1School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing, 102488, China)
出处: Chemical Research in Chinese Universities 2024
摘要: A new acentric galloborate (GBO) [H2dab][GaB5O10] (1, 1,4-dab: 1,4-diaminobutane) has been synthesized under solvothermal conditions. The alternation ...
作者: Chong,Ruqing1;Meng,Lingding1;Liao,Qiyong1;Meng,Zihui1;Liu,Wenfang1; (1School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Liangxiang Higher Education Park, Fangshan District, Beijing, 102488, China)
出处: Separation and Purification Technology 2024 Vol.336
摘要: Enzymatic CO2 conversion represents a highly efficient, energy-conserving, and environmentally sustainable approach to mitigating the increasing press ...
作者: Mao, Menglei1; Chong, Ruqing1; Sun, Feixue1; Gao, Rui1; Meng, Zihui1; Fan, Xinlong1; Liu, Wenfang1 (1School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Liangxiang Higher Education Park, Fangshan District, Beijing; 102488, China)
出处: Journal of Cleaner Production 2024
作者: Chong, Ruqing1; Meng, Lingding1; Liao, Qiyong1; Meng, Zihui1; Liu, Wenfang1 (1School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Liangxiang Higher Education Park, Beijing, China)
出处: Journal of Applied Polymer Science 2024
发明人: 刘文芳,毛梦雷,崇汝青
申请人: 北京理工大学
申请号: 202311558398.6
申请日期: 2023.11.21
摘要: 本发明涉及一种可大大加速酶催化二氧化碳转化为甲酸的碳化钛基纳米复合材料及其制备方法,属于纳米复合材料、酶催化反应领域。本发明的目的是为了克服现有技术中效果最好的增强材料介孔氧化硅(mSiO2)的结构参数易受制备工艺和外界环境影响,结构不易控制,导致性能不稳定的缺点,并进一步提高 ...
发明人: 刘文芳,崇汝青,毛梦雷
申请人: 北京理工大学
申请号: 202311556991.7
申请日期: 2023.11.21
摘要: 本发明涉及一种氧化硅/氮化碳复合材料在酶催化CO2制甲酸中的应用,属于酶催化、复合材料的应用领域。本发明以纳米SiO2、碳氮有机化合物为原料,通过简单的一步烧结法制得SiO2/氮化碳(CN),简称为SCN。纳米SiO2
发明人: 刘文芳,孟令玎,崇汝青
申请人: 北京理工大学
申请号: 202311431736.X
申请日期: 2023.10.31
摘要: 本发明涉及一种氨基功能化的聚合物微孔膜‑纳米氧化硅复合材料的制备及其应用于固定酶的方法,属于高分子材料、酶的固定化技术领域。本发明利用羧基和氨基之间的酰胺化反应,将氨基改性的纳米氧化硅负载到羧基改性的聚合物微孔膜表面,制得氨基功能化聚合物微孔膜‑纳米氧化硅复合材料(简称为APS膜),再通过戊二醛(G ...