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Formation of Copolymer-Ag Nanoparticles Composite Micelles in Three-dimensional Co-flow Focusing Microfluidic Device 被引量:1
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作者 feng mengran HE Guangyao +4 位作者 YI Si SONG Weizheng CHEN Yanjun ZHANG Chaocan WANG Yifeng 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第6期1259-1265,共7页
A novel method was presented to create composite micelles of amphiphilic copolymers and Ag nanoparticles(NPs) in a three-dimensional co-flow focusing microfluidic device(3D CFMD). Self-assembly of the copolymers was i... A novel method was presented to create composite micelles of amphiphilic copolymers and Ag nanoparticles(NPs) in a three-dimensional co-flow focusing microfluidic device(3D CFMD). Self-assembly of the copolymers was initiated by the fast mixing of water and a blend dispersion of hydrophobic Ag NPs and amphiphilic copolymers. At the same time, the hydrophobic Ag NPs enter the core of copolymer micelles, based on the hydrophobic interaction. The copolymer-Ag NPs composite micelles have a core-shell structure with copolymer shell and Ag NPs core. COMSOL Multiphysics is used to simulate the concentration distribution of copolymers and Ag NPs under different flow rates. Co-assembly microfluidic conditions are determined based on simulation results. Under suitable microfluidic conditions, both block copolymers and gradient copolymers can co-assemble with hydrophobic Ag NPs to form composite micelles, respectively. This microfluidic coassembly method will have a good prospect in the preparation of composite micelles of amphiphilic copolymers and metal nanoparticles. 展开更多
关键词 composite micelles SELF-ASSEMBLY co-flow microfluidic simulation amphiphilic copolymers Ag nanoparticles
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不动杆菌JW对苯甲酸与水杨酸的生物降解研究
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作者 马志远 封梦然 张旭旺 《油气田环境保护》 CAS 2024年第5期38-44,共7页
苯甲酸与水杨酸是环境中常见的有机污染物,也是多种芳烃污染物降解的中间代谢物。文章考察了不动杆菌(Acinetobacter sp.)JW对苯甲酸与水杨酸的降解特性,结果表明JW能够以苯甲酸与水杨酸为唯一碳源生长,对浓度为50~500 mg/L苯甲酸与水... 苯甲酸与水杨酸是环境中常见的有机污染物,也是多种芳烃污染物降解的中间代谢物。文章考察了不动杆菌(Acinetobacter sp.)JW对苯甲酸与水杨酸的降解特性,结果表明JW能够以苯甲酸与水杨酸为唯一碳源生长,对浓度为50~500 mg/L苯甲酸与水杨酸的降解能力较强。反应体系pH值7.0对JW生长及降解苯甲酸与水杨酸更为适宜,而大部分金属离子对JW生长及污染物降解具有明显抑制作用。基于液相色谱-质谱联用分析与基因组注释,推测JW能够利用邻苯二酚途径与原儿茶酸途径降解苯甲酸,利用邻苯二酚途径降解水杨酸。 展开更多
关键词 苯甲酸 水杨酸 生物降解 降解途径 不动杆菌
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