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界面辅助合成:实现导电聚合物有效纳米结构调控的途径

Interface-assisted synthesis: a gateway to effective nanostructure tuning of conducting polymers.

作者信息

Chondath Subin Kaladi, Menamparambath Mini Mol

机构信息

Department of Chemistry, National Institute of Technology Calicut Calicut 673601 Kerala India

出版信息

Nanoscale Adv. 2021 Jan 28;3(4):918-941. doi: 10.1039/d0na00940g. eCollection 2021 Feb 23.

Abstract

The interface-assisted polymerization technique can be viewed as a powerful emerging tool for the synthesis of conducting polymers (CPs) on a large scale. Contrary to other bulk or single-phase polymerization techniques, interface-assisted synthesis strategies offer effective nanostructure control in a confined two-dimensional (2-D) space. This review focuses on the types of interfaces, mechanism at the interface, advantages and future perspectives of the interfacial polymerization in comparison to conventional polymerization techniques. Hence, the primary focus is on briefing the different types of the chemical methods of polymerization, followed by uniqueness in the reaction dynamics of interface polymerization. The classification of interfaces into four types (liquid/solid, gas/liquid, liquid/liquid, and gas/solid) is based on the versatility and underlying mechanistic pathway of the polymerization of each type. The role of interface in tuning the nanostructure of CPs and the performance evaluation of pristine CPs based on the electrical conductivity are also discussed. Finally, the future outlook of this emerging field is discussed and proposed in detail through some multifunctional applications of synthesized conducting polymers.

摘要

界面辅助聚合技术可被视为一种大规模合成导电聚合物(CPs)的强大新兴工具。与其他本体或单相聚合技术不同,界面辅助合成策略在受限的二维(2-D)空间中提供了有效的纳米结构控制。本综述重点关注界面的类型、界面处的机理、与传统聚合技术相比界面聚合的优势和未来展望。因此,主要重点是简要介绍不同类型的化学聚合方法,然后介绍界面聚合反应动力学的独特性。基于每种类型聚合的通用性和潜在机理途径,将界面分为四种类型(液/固、气/液、液/液和气/固)。还讨论了界面在调节导电聚合物纳米结构中的作用以及基于电导率对原始导电聚合物的性能评估。最后,通过合成导电聚合物的一些多功能应用,详细讨论并提出了这一新兴领域的未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4394/9419666/e6a0f718beb0/d0na00940g-s1.jpg

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