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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Expanding graphene properties by a simple S-doping methodology based on cold CS2 plasma
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Expanding graphene properties by a simple S-doping methodology based on cold CS2 plasma

机译:通过基于冷CS2等离子体的简单S掺杂方法扩展石墨烯特性

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For the first time, graphene has been successfully doped with sulfur via short exposition to CS2 microwave cold plasmas, avoiding high-temperature and time/chemicals-consuming treatments. Different S-doped samples were obtained by varying the duration of plasma treatments, reaching a remarkable 2.3 at % of S content after only 5min of exposition. The S-doped graphenes present several sulfur containing moieties, among which thioether groups resulted to be predominant. These moieties are covalently bond to graphene layers and exhibit good thermal and water stability. In addition, unlike others more conventional methods, S-doping via CS2 plasmas do not damage the structural order of graphene. The influence of sulfur doping on the graphene properties has been assessed through two different tests: on one side, the capture of Pd2+ ions in aqueous solution, and on the other, the electrocatalytic activity towards the production of oxygen from water (OER process). In both cases, the performance of the pristine graphene was significantly enhanced with S-doping. In addition, the capture of Pd2+ allows the formation of sulfur-Pd nanoclusters supported on the graphene surface, which are very useful in electrochemical devices. (C) 2018 Elsevier Ltd. All rights reserved.
机译:首次,石墨烯已通过短博览会成功掺杂硫,通过短暂的CS2微波冷等离子体,避免了高温和时间/化学品消耗的处理。通过改变血浆处理的持续时间来获得不同的S掺杂样品,仅在阐述5分钟后达到S含量的显着2.3。 S掺杂的石墨烯存在几个含硫部分,其中硫醚基团导致主要。这些部分与石墨烯层共价键,表现出良好的热和水稳定性。另外,与其他更传统的方法不同,通过CS2等离子体的S掺杂不会损坏石墨烯的结构顺序。通过两种不同的试验评估了硫磺掺杂对石墨烯特性的影响:在一侧,在水溶液中捕获PD2 +离子,另一方面,电催化活性从水(Oer工艺)中产生氧气(Oer工艺)。在这两种情况下,通过S掺杂显着增强了原始石墨烯的性能。另外,PD2 +的捕获允许形成负载在石墨烯表面上的硫-Pd纳米能器,其在电化学装置中非常有用。 (c)2018年elestvier有限公司保留所有权利。

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