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用于长期选择性六价铬解毒的自还原共轭微孔聚苯胺,由可调孔径驱动

Self-Reducible Conjugated Microporous Polyaniline for Long-Term Selective Cr(VI) Detoxication Driven by Tunable Pore Dimension.

作者信息

Chen Jie, Wang Yubing, Ye Changshen, Lyu Wei, Zhu Jinwei, Yan Wei, Qiu Ting

机构信息

College of Environment and Resources, Fuzhou University, Fuzhou 350116, Fujian, P. R. China.

Department of Environmental Science and Engineering, Xi'an Jiaotong University, Xi'an 710049, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2020 Jun 24;12(25):28681-28691. doi: 10.1021/acsami.0c07059. Epub 2020 Jun 12.

Abstract

A simple methodology to controllably tune the pore size and Cr(VI) adsorption capacity was reported herein to synthesize a new series of conjugated microporous polyaniline (CMPA) networks. The well-ordered micropore was acquired through our very recent Bristol-Xi'an Jiaotong method, and the pore size was fine-tuned to increase with the increasing length of linkers, mimicking covalent organic frameworks and metal organic frameworks very much. A selective ultrahigh adsorption capacity of 520.8 mg/g was achieved by CMPA-1 in a very fast manner, with a systematically gradual decrease to 173.9 mg/g of CMPA-3 by enlarging the pore size of the networks, featuring tunable adsorption capacity through molecular-size-recognition mechanism. Additionally, our robust CMPA networks, which were constructed by Buchwald-Hartwig chemistry, showed the complete function of polyaniline and were capable of providing, besides large storage capacity for Cr(III), at least 10 reductant/desorption-free cycles for effective Cr(VI) reduction and detoxication through their novel self-reducible redox states. Outcomes showed that our CMPAs could be applied as new self-healing scavengers in the next generation for Cr(VI) storage and detoxication.

摘要

本文报道了一种可控调节孔径和Cr(VI)吸附容量的简单方法,用于合成一系列新型共轭微孔聚苯胺(CMPA)网络。通过我们最新的布里斯托-西安交通大学方法获得了有序的微孔,并且孔径随着连接体长度的增加而微调增大,这与共价有机框架和金属有机框架非常相似。CMPA-1以非常快的速度实现了520.8 mg/g的选择性超高吸附容量,随着网络孔径的增大,吸附容量系统地逐渐降低至CMPA-3的173.9 mg/g,其通过分子尺寸识别机制实现了可调的吸附容量。此外,我们通过布赫瓦尔德-哈特维希化学构建的坚固CMPA网络展现了聚苯胺的完整功能,除了对Cr(III)具有大存储容量外,还能够通过其新颖的自还原氧化还原状态,为有效的Cr(VI)还原和解毒提供至少10次无还原剂/解吸循环。结果表明,我们的CMPA可作为下一代新型自修复清除剂用于Cr(VI)的存储和解毒。

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