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Robust Amphiphobic Few‐Layer Black Phosphorus Nanosheet with Improved Stability

机译:具有增强稳定性的稳健的两性少层黑色磷纳米片

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摘要

Few‐layer black phosphorus (FL‐BP) has been intensively studied due to its attractive properties and great potential in electronic and optoelectronic applications. However, the intrinsic instability of FL‐BP greatly limits its practical application. In this study, the amphiphobic FL‐BP is achieved by functionalization of 1 ,1 ,2 ,2 ‐perfluorooctyltrichlorosilane (PFDTS) on the surface of FL‐BP. The obtained PFDTS coated FL‐BP (FL‐BP/PFDTS) demonstrates enhanced stability, which is not observed during significant degradation for 2 months in high moisture content environment (95% humidity). Particularly, attributing to the surface amphiphobicity, FL‐BP/PFDTS exhibits strong surface water repellency in the presence of oleic acid (as the contaminant), while other passivation coating layers (such as hydrophilic or hydrophobic coating) become hydrophilicity under such conditions. Owing to this advantage, the obtained FL‐BP/PFDTS demonstrates enhanced stability in high moisture content environment for 2 months, even though the surface is contaminated by oil liquid or other organic solvents (such as oleic acid, CH Cl , and ‐methyl‐2‐pyrrolidone). The passivation of FL‐BP by amphiphobic coating provides an effective approach for FL‐BP stabilization toward future applications.
机译:由于其吸引人的性能以及在电子和光电应用中的巨大潜力,很少对黑磷(FL-BP)进行深入研究。但是,FL-BP固有的不稳定性极大地限制了其实际应用。在这项研究中,通过在FL-BP表面官能化1,1,2,2-全氟辛基三氯硅烷(PFDTS)来实现两亲性FL-BP。获得的PFDTS涂层的FL-BP(FL-BP / PFDTS)表现出增强的稳定性,这在高水分含量环境(95%湿度)下持续2个月的明显降解过程中未观察到。特别是归因于表面的两亲性,FL-BP / PFDTS在油酸(作为污染物)存在下表现出很强的表面防水性,而其他钝化涂层(如亲水性或疏水性涂层)在这种条件下却具有亲水性。由于这一优势,即使表面被油液或其他有机溶剂(例如油酸,CH Cl和-甲基甲基)污染,所获得的FL-BP / PFDTS仍能在高水分环境中显示2个月的稳定性。 2-吡咯烷酮)。两性涂层对FL-BP的钝化为将来的应用提供了一种有效的方法来稳定FL-BP。

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