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多硫化物及其应用的联系。

The link to polysulfides and their applications.

机构信息

School of chemical Sciences, University of Auckland, Private Bag, 92019, Auckland, 1142, New Zealand.

出版信息

Chem Commun (Camb). 2021 Apr 4;57(26):3190-3202. doi: 10.1039/d1cc00505g. Epub 2021 Mar 15.

Abstract

This article highlights recent discoveries within the field of polysulfides which are created from waste sulfur through inverse vulcanisation. Due to the current environmental climate, making materials from renewable resources or industrial waste is highly desirable. Sulfur is an impurity refined out of petroleum and gas reserves at a rate of more than 70 million tonnes a year and is currently used in the rubber, fertiliser and chemical industries. However, even with these applications, the usage is significantly below the amount refined each year, leading to large stockpiles of sulfur. Inverse vulcanisation is an attractive method to synthesize new sulfur based materials by trapping the polysulfide using crosslinkers containing diene functionalities. A wide variety of unsaturated crosslinkers can be incorporated into polysulfide materials resulting in inorganic rubbers, combining the benefits of both components. The materials produced have been shown to selectively absorb mercury, are prominsing replacements for existing mid IR lenses, and can be used as capsules for controlled release fertilisers. An overview of the field, including the breadth of crosslinkers employed, synthetic strategies, and the properties and potential applications of polysulfides created through inverse vulcanisation, is captured.

摘要

本文重点介绍了通过反硫化从废硫中产生的多硫化物领域的最新发现。由于当前的环境气候,从可再生资源或工业废料中制造材料是非常可取的。硫是从石油和天然气储备中精炼出来的杂质,每年的精炼量超过 7000 万吨,目前用于橡胶、肥料和化学工业。然而,即使有了这些应用,每年的用量仍明显低于精炼量,导致大量的硫磺库存。反硫化是一种通过使用含有二烯官能团的交联剂捕获多硫化物来合成新型硫基材料的有吸引力的方法。各种各样的不饱和交联剂可以被纳入多硫化物材料中,从而形成无机橡胶,结合了两种成分的优点。已经证明,所制备的材料可以选择性地吸收汞,是现有中红外透镜的有前途的替代品,并且可以用作控制释放肥料的胶囊。本文概述了该领域,包括所使用的交联剂的广泛程度、合成策略,以及通过反硫化生成的多硫化物的性能和潜在应用。

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