个人信息Personal Information
教授
博士生导师
硕士生导师
任职 : 辽宁省石化行业高效节能分离技术工程实验室副主任
性别:男
毕业院校:大连理工大学
学位:博士
所在单位:化工海洋与生命学院
学科:化学工程. 膜科学与技术
办公地点:D01-316B
联系方式:0427-2631819
电子邮箱:yanxiaoming@dlut.edu.cn
The control and optimization of macro/micro-structure of ion conductive membranes for energy conversion and storage
点击次数:
论文类型:期刊论文
发表时间:2016-05-01
发表刊物:CHINESE JOURNAL OF CHEMICAL ENGINEERING
收录刊物:SCIE、EI、ISTIC
卷号:24
期号:5
页面范围:558-571
ISSN号:1004-9541
关键字:Ion conductive membranes; Macrostructure; Microstructure; Optimization
摘要:Ion conductive membranes (ICMs) are frequently used as separators for energy conversion and storage technologies of fuel cells, flow battery, and hydrogen pump, because of their good ion-selective conduction and low electronic conductivity. Firstly, this feature article reviews the recent studies on the development of new non-fluorinated ICMs with low cost and their macro/micro-structure control. In general, these new non-fluorinated ICMs have lower conductivity than commercial per-fluorinated ones, due to their poor ion transport channels. Increasing ion exchange capacity (IEC) would create more continuous hydrophilic channels, thus enhancing the conductivity. However, high IEC also expands the overall hydrophilic domains, weakens the interaction between polymer chains, enhances the mobility of polymer chains, and eventually induces larger swelling. The micro-scale expansion and macro-scale swelling of the ICMs with high IEC could be controlled by limiting the mobility of polymer chains. Based on this strategy, some efficient techniques have been developed, including covalent crosslinking, semi-interpenatrating polymer network, and blending. Secondly, this review introduces the optimization of macro/microstructure of both per-fluorinated and non-fluorinated ICMs to improve the performance. Macro-scalemultilayer composite is an efficient way to enhance the mechanical strength and the dimensional stability of the ICMs, and could also decrease the content of perfluorosulfonic acid resin in the membrane, thereby reducing the cost of the per-fluorinated ICMs. Long side chain, multiple functionalization, small molecule inducing micro-phase separation, electrospun nanofiber, and organic-inorganic hybrid could construct more efficient ion transport channels, improving the ion conductivity of ICMs. (C) 2016 The Chemical Industry and Engineering Society of China, and Chemical Industry Press. All rights reserved.
上一条:Constructing a rigid crosslinked structure for enhanced conductivity of imidazolium functionalized polysulfone hydroxide exchange membrane
下一条:Enhanced hydroxide conductivity of imidazolium functionalized polysulfone anion exchange membrane by doping imidazolium surface-functionalized nanocomposites