反硫化:一个新兴领域的新入门指南

Liam James Dodd
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引用次数: 0

摘要

反硫化是化学和材料科学的一个快速发展的领域,有可能提供低成本,绿色化学粘合剂,从工业废料:单质硫的下一代聚合物材料。反硫化聚合物具有可调节的性能、可回收性以及方便和适应性强的合成和加工,可用于几个理想的应用,如电池、水净化和先进的光学元件。自该领域的概念出现以来的十年里,反硫化已经获得了越来越多的研究兴趣和普及,甚至最近还看到了一些商业应用。这篇综述文章的重点是支持反硫化领域的发展,为新的研究人员在该领域提供最有效的资源。在这方面,这篇综述文章旨在为希望在该领域投资的研究人员提供一个理想的起点。本综述首先概述了反硫化的起源,然后对反硫化的应用进行了简要介绍,并指出了对这些应用的其他有用的综述,从而为研究兴趣提供了一个案例,并为新想法提供了潜在的灵感来源。最重要的是,这篇综述继续为实验室研究人员提供一个有效的资源,以建立自己与该领域的基础知识,同时提供了实践技能的指导,以进行反硫化。在此过程中,本综述为标准化反硫化方法提供了指南,同时也允许新的实验室工作人员避免一些不明显的陷阱,并且在其他化学领域不常见。然后,本文审查了分析反硫化聚合物的方法,这可能是具有挑战性的,有时需要仔细考虑。最后,本文回顾了反硫化的一些机理,并提出了该领域未来的研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Inverse vulcanisation: a new Starter's guide to an emerging field

Inverse vulcanisation: a new Starter's guide to an emerging field

Inverse vulcanisation is a rapidly developing field of chemistry and materials science with the potential to afford low cost, green chemistry adherent, next generation polymeric materials from the industrial waste product: elemental sulfur. With tuneable properties, recyclability, as well as convenient and adaptable syntheses and processing, inverse vulcanised polymers may be used in several desirable applications, such as batteries, water purification, and advanced optical components. In the ten years since the field's conception, inverse vulcanisation has garnered growing research interest and popularity, and has even seen some recent commercial uptake. This review article is focused on supporting the growth of the inverse vulcanisation field by providing a resource for new researchers to have the most efficient possible start in the field. In that regard, this review article is designed to act as an ideal starting point for researchers looking to become invested in the field. This review first outlines the origin of inverse vulcanisation, before giving a small account of the applications of inverse vulcanisation and pointing to other useful reviews on these applications, thus making a case for research interest and providing sources of potential inspiration for new ideas. Most importantly, this review goes on to provide an effective resource for lab based researchers to establish themselves with foundational knowledge of the field, while offering a guide to practical skills in performing inverse vulcanisation. In doing so, this review offers a guide to standardising methods in inverse vulcanisation whilst also allowing new lab workers to avoid some of the pitfalls that are not obvious, and not common to other fields of chemistry. Then, this review examines methods of analysing inverse vulcanised polymers, which can be challenging, and sometimes needs careful consideration. Finally, this review looks at some mechanistic considerations of inverse vulcanisation before proposing directions for future research in the field.

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