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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >High surface area sulfur-doped microporous carbons from inverse vulcanised polymers
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High surface area sulfur-doped microporous carbons from inverse vulcanised polymers

机译:来自逆硫化聚合物的高表面积硫掺杂微孔碳

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摘要

Sulfur is not only a highly abundant element, but is also produced as a by-product of the petrochemical industry. However, it has not been conventionally used to produce functional materials because polymeric sulfur is unstable, and decomposes back to its monomer. Recently, inverse vulcanisation has been used to produce stable polymeric materials with elemental sulfur as a major component. Here we show that an inverse vulcanised polymer produced from sulfur and another low-cost industrial by-product, dicyclopentadiene, can be made highly microporous by carbonisation. The resultant materials have a remarkably high surface area of over 2200 m(2) g(-1), and retain a high level of sulfur content. The S-doped carbons out perform many higher cost commercial and academic materials in gas adsorption applications, such as H-2, CO2, as well as mercury and gold capture from water.
机译:硫不仅是一种高度丰富的元素,而且还由石化工业的副产品制成。 然而,它常规地用于生产功能材料,因为聚合物硫不稳定,并将其分解回其单体。 最近,反向硫化已用于生产具有元素硫作为主要成分的稳定的聚合物材料。 在这里,我们显示由硫和另一种低成本工业副产物二环戊二烯制备的逆硫化聚合物可以通过碳化高度微孔。 所得材料具有超过2200μm(2 )g(-1)的显着高表面积,并保留高水平的硫含量。 S掺杂的碳水化石在气体吸附应用中表现了许多更高的商业和学术材料,例如H-2,CO 2,以及水中的汞和金。

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