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Solvent exfoliation stabilizes TiS2 nanosheets against oxidation, facilitating lithium storage applications

机译:溶剂剥离稳定TiS2 nanosheets对抗氧化,促进锂存储应用程序

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Titanium disulfide is a promising material for a range of applications, including lithium-ion battery (LIB) anodes. However, its application potential has been severely hindered by the tendency of exfoliated TiS2 to rapidly oxidize under ambient conditions. Herein, we confirm that, although layered TiS2 powder can be exfoliated by sonication in aqueous surfactant solutions, the resultant nanosheets oxidise almost completely within hours. However, we find that upon performing the exfoliation in the solvent cyclohexyl-pyrrolidone (CHP), the oxidation is almost completely suppressed. TiS2 nanosheets dispersed in CHP and stored at 4 degrees C in an open atmosphere for 90 days remained up to 95% intact. In addition, CHP-exfoliated nanosheets did not show any evidence of oxidation for at least 30 days after being transformed into dry films even when stored under ambient conditions. This stability, probably a result of a residual CHP coating, allows TiS2 nanosheets to be deployed in applications. To demonstrate this, we prepared lithium ion battery anodes from nano:nano composites of TiS2 nanosheets mixed with carbon nanotubes. These anodes displayed reversible capacities (920 mA h g(-1)) close to the theoretical value and showed good rate performance and cycling capability.
机译:二硫化钛是一种很有前途的材料的应用范围,包括锂离子电池阳极(自由)。潜在的严重阻碍TiS2迅速氧化倾向的剥落了在环境条件下。,虽然分层TiS2粉清新声波降解法在水表面活性剂解决方案,合成nanosheets氧化在数小时内几乎完全。在表演的剥落溶剂cyclohexyl-pyrrolidone (CHP)氧化是几乎完全抑制。nanosheets分散在共和人民党和储存在4度为90天。在一个开放的氛围保持95%不变。CHP-exfoliated nanosheets没有显示任何氧化后至少30天的证据被转换成干电影即使存储在环境条件下。可能由于残余CHP涂料,允许TiS2 nanosheets部署应用程序。从纳米锂离子电池阳极:nano复合材料的TiS2 nanosheets混合碳纳米管。能力(920毫安h g(1))接近理论价值和展示良好的率性能和循环性能。

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