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一种还原超分子水凝胶:一种具有时空控制的简便制造多种金属纳米粒子修饰的导电网络的平台。

A Reductive Supramolecular Hydrogel: A Platform for Facile Fabrication of Diverse Metal-Nanoparticle-Decorated Conductive Networks with Spatiotemporal Control.

机构信息

Department of Chemistry, Key Lab of Organic Optoelectronics & Molecular Engineering, Tsinghua University, Beijing, 100084, P. R. China.

Beijing System Design, Institute of the Electro-mechanic Engineering, Beijing, 100854, P. R. China.

出版信息

Chempluschem. 2020 Aug;85(8):1704-1709. doi: 10.1002/cplu.202000468. Epub 2020 Jul 9.

Abstract

Nanoparticle-hydrogel hybrid composites have a great potential for a broad range of applications, such as antibacterial materials, stimuli-responsive materials and catalysis. A novel supramolecular hydrogel system was developed using an amino acid based amphiphile containing a terminal pyrrole moiety as a gelator. The pyrrole moiety could serve as both reducing agent and monomer, and a variety of metal precursors penetrating into the hydrogel could be reduced in situ into metal nanoparticles while the pyrrole moieties preorganized in hydrogel were oxidized into polyprroles, affording metal-nanoparticle-decorated covalent conductive networks. This strategy allows the facile fabrication of diverse mono- or multimetallic nanoparticle-polymer networks from one hydrogel by a simple reaction-diffusion approach. More importantly, besides homogeneous composites, unique multisegment heterogeneous systems with spatiotemporal control were also easily accessible. Furthermore, based on the same multifunctional molecule, the fabrication of hierarchically pore-structured metal-nanoparticles-polymers as well as metal-nanoparticles-carbon structures was also realized.

摘要

纳米粒子-水凝胶杂化复合材料在抗菌材料、刺激响应材料和催化等广泛领域具有巨大的应用潜力。本研究使用一种含有末端吡咯部分的基于氨基酸的两亲分子作为凝胶剂,开发了一种新型超分子水凝胶体系。吡咯部分既可以作为还原剂,也可以作为单体,而各种进入水凝胶的金属前体可以在原位还原成金属纳米粒子,同时水凝胶中原位预组织的吡咯部分被氧化成聚吡咯,从而形成金属纳米粒子修饰的共价导电网络。这种策略允许通过简单的反应-扩散方法,从一种水凝胶中轻松制备各种单金属或多金属纳米粒子-聚合物网络。更重要的是,除了均匀的复合材料外,还可以轻松获得具有时空控制的独特多段异质体系。此外,基于相同的多功能分子,还实现了分级孔结构的金属纳米粒子-聚合物以及金属纳米粒子-碳结构的制备。

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