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Economic Sulfur Conversion to Functional Polythioamides through Catalyst-Free Multicomponent Polymerizations of Sulfur, Acids, and Amines

机译:通过无催化剂的硫,酸和胺的多组分聚合,经济地将硫转化为功能性聚硫酰胺

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摘要

Sulfur utilization is a global concern because of its abundant nature sources and the safety or environmental problems caused by its burning or oxidation during storage, while sulfur-containing polymers are popular materials in virtue of their fascinating properties such as metal coordination ability, high refractive indices, and semiconducting property. The synthesis of sulfur-containing polymers is challenging, especially directly from elemental sulfur. Herein, catalyst-free and scalable multicomponent polymerizations (MCPs) of all commercially available elemental sulfur, dicarboxylic acids, and diamines were reported to facilely construct 12 polythioamides with diverse and well-defined structures, high molecular weights (M_w's up to 86 200 g/mol), and excellent yields (up to 99%) from elemental sulfur. Besides commonly used aliphatic diamines, aromatic diamine monomers are also applicable to these multicomponent polymerizations, affording polythioamides with unique rigid structures and improved functionality as compared to those of the previously reported polythioamides. These polythioamides can be applied in gold recovery, which could extract a trace amount of Au~(3+) from practical acidic leaching solution of discarded electronic waste selectively, rapidly (1 min), sensitively (10 ppb), and efficiently (>99.99%) with high extraction capacity up to 0.60 g· Au~(3+)/g to directly afford high-purity elemental gold after pyrolysis. The MCPs could make use of both abundantly existing sulfur waste and trace amounts of precious gold residue in electronic wastes, demonstrating their great potential in resource utilization.
机译:硫的利用是全球关注的问题,因为其丰富的自然资源以及在储存过程中燃烧或氧化引起的安全或环境问题,而含硫聚合物因其引人入胜的性能(如金属配位能力,高折射率)而成为受欢迎的材料。 ,以及半导体性质。含硫聚合物的合成具有挑战性,特别是直接从元素硫中合成。在此,据报道,所有可商购的元素硫,二羧酸和二胺的无催化剂多级聚合反应(MCP)可以轻松构建12种具有多样且结构明确,分子量高的聚硫酰胺(M_w高达86200 g /摩尔),并从元素硫中获得极佳的收率(最高99%)。除了常用的脂族二胺外,芳族二胺单体也可用于这些多组分聚合反应,与以前报道的聚硫代酰胺相比,聚硫代酰胺具有独特的刚性结构和改进的功能。这些聚硫酰胺可用于金的回收,可从废弃电子废物的实用酸性浸出液中选择性,快速(1分钟),灵敏(10 ppb)和有效(> 99.99)提取痕量的Au〜(3+)。 %)的萃取能力高达0.60 g·Au〜(3 +)/ g,可在热解后直接提供高纯度的元素金。 MCP既可以利用现有的硫磺废物,也可以利用电子废物中的痕量贵重金残留物,这显示出它们在资源利用方面的巨大潜力。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第2期|978-986|共9页
  • 作者单位

    State Key Laboratory of Luminescent Materials and Devices Center for Aggregation-Induced Emission;

    Analytical and Testing Center South China University of Technology Guangzhou 510640 China;

    State Key Laboratory of Luminescent Materials and Devices Center for Aggregation-Induced Emission Department of Chemistry Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction The Hong Kong University of Science & Technology Clear Water Bay Kowloon Hong Kong China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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