硫黄
共聚物
硫化
化学
聚合
元素分析
单体
加氢脱硫
化学工程
原材料
高分子化学
聚合物
有机化学
天然橡胶
工程类
作者
Woo Jin Chung,Jared J. Griebel,Eui‐Tae Kim,Hyunsik Yoon,Adam G. Simmonds,Hyun Ji,Philip T. Dirlam,Richard S. Glass,Jeong Jae Wie,Ngoc A. Nguyen,Brett Guralnick,Jungjin Park,Árpád Somogyi,Patrick Théato,Michael E. Mackay,Yung‐Eun Sung,Kookheon Char,Jeffrey Pyun
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2013-04-12
卷期号:5 (6): 518-524
被引量:1169
摘要
An excess of elemental sulfur is generated annually from hydrodesulfurization in petroleum refining processes; however, it has a limited number of uses, of which one example is the production of sulfuric acid. Despite this excess, the development of synthetic and processing methods to convert elemental sulfur into useful chemical substances has not been investigated widely. Here we report a facile method (termed ‘inverse vulcanization’) to prepare chemically stable and processable polymeric materials through the direct copolymerization of elemental sulfur with vinylic monomers. This methodology enabled the modification of sulfur into processable copolymer forms with tunable thermomechanical properties, which leads to well-defined sulfur-rich micropatterned films created by imprint lithography. We also demonstrate that these copolymers exhibit comparable electrochemical properties to elemental sulfur and could serve as the active material in Li–S batteries, exhibiting high specific capacity (823 mA h g−1 at 100 cycles) and enhanced capacity retention. A polymerization method for converting elemental sulfur into a chemically stable, processable and electrochemically active copolymer has been described. This methodology — termed inverse vulcanization — is conducted by a one-step process using liquid sulfur, as both reaction medium and reactant, and vinylic comonomers to form polymeric materials with a high content of sulfur (50–90 wt%).
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