通过反硫化二烯丙基硅烷官能化二茂铁获得的电活性富硫材料

IF 3.9 2区 化学 Q2 POLYMER SCIENCE
María Vera-Tuset , Rubén Mas-Ballesté , Isabel Cuadrado , Alicia Moya , Sonia Bruña
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引用次数: 0

摘要

元素硫与 1,1´-双(二甲基烯丙基硅基)二茂铁(1)在 130 °C 下以 50:50 或 70:30 的重量比发生反应,通过反向硫化过程生成新的聚合物材料。通过这种工艺,硫原子链与有机金属共聚单体之间形成共价 C-S 键,从而将烯丙基硅烷官能化二茂铁分子整合到固体基质结构中。我们通过元素分析、TXRF、ATR-IR、固态 NMR、XPS 和 SEM 评估了所获得的无定形材料的结构和组成。值得注意的是,二茂铁片段与多硫化物材料结合后,其电化学活性得以保留。因此,(1) 是第一个用作共聚单体来开发氧化还原反应型多硫化物材料的含硅和二茂铁分子。此外,硫原子与水溶液中存在的镉(II)或汞(II)金属中心相互作用,可调节二茂铁分子的电化学信号。因此,这项工作介绍了多硫化链与二茂铁片段的协同组合,从而对污染水质资源中常见的有害金属中心进行电化学识别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Electroactive sulfur-rich materials obtained via inverse vulcanization of a diallylsilyl-functionalized ferrocene†

Electroactive sulfur-rich materials obtained via inverse vulcanization of a diallylsilyl-functionalized ferrocene†

Reaction of elemental sulfur with 1,1′-bis(dimethylallylsilyl)ferrocene () in 50 : 50 or 70 : 30 wt% at 130 °C results in new polymeric materials as a consequence of an inverse vulcanization process. Through this procedure, allylsilyl-functionalized ferrocene moieties are integrated into a solid matrix structured by the formation of covalent C–S bonds between sulfur atom chains and organometallic co-monomers. The structure and composition of the amorphous materials obtained have been assessed by elemental analysis, TXRF, ATR-IR, solid-state NMR, XPS and SEM. Remarkably, the electrochemical activity of ferrocene fragments is preserved when incorporated into the polysulfide material. Consequently, is the first silicon- and ferrocene-containing molecule being used as a co-monomer to develop redox-responsive polysulfide materials. Furthermore, the interaction of sulfur atoms with Cd(ii) or Hg(ii) metal centers, present in aqueous solutions, results in the modulation of the electrochemical signal of ferrocene moieties. Therefore, this work presents the synergistic combination of polysulfide chains and ferrocene fragments resulting in electrochemical recognition of harmful metal centers commonly present in polluted hydric resources.

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来源期刊
Polymer Chemistry
Polymer Chemistry POLYMER SCIENCE-
CiteScore
8.60
自引率
8.70%
发文量
535
审稿时长
1.7 months
期刊介绍: Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.
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