膜
锌
材料科学
纤维素
渗透
巴勒
化学工程
选择性
氯化物
分子
溶剂
促进扩散
无机化学
有机化学
催化作用
化学
冶金
生物化学
工程类
作者
Xiong‐Fei Zhang,Ting Hou,Jin Chen,Yijun Feng,Bengang Li,Xiaoli Gu,Ming He,Jianfeng Yao
标识
DOI:10.1021/acsami.8b07309
摘要
Facilitated transport cellulose membranes with different zinc ion loadings are fabricated via a facile and green solvent system (zinc chloride/calcium chloride solution). Zn2+ ions lower the pristine hydrogen bonds that normally reinforce the cellulose chains, and Ca2+ ions facilitate interactions among the Zn-cellulose chains to form nanofibrils. The strategy provides an effective route to immobilize zinc species into membrane matrix and constructs facilitated transport pathway for CO2 molecules. The self-standing membranes are transparent, flexible and demonstrate ultraselective CO2 permeation. The optimum separation performance is achieved over CM-0 with the highest zinc content (22.2%), and it exhibits a CO2 permeability of 155.0 Barrer, with selectivity ratios of 27.2 (CO2/N2) and 100.6 (CO2/O2). The excellent separation performance is assigned to the π complexation mechanism between Zn2+ and CO2.
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