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Recent Progress on Stability and Passivation of Black Phosphorus

机译:黑磷的稳定性和钝化研究进展

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摘要

From a fundamental science perspective, black phosphorus (BP) is a canonical example of a material that possesses fascinating surface and electronic properties. It has extraordinary in-plane anisotropic electrical, optical, and vibrational states, as well as a tunable band gap. However, instability of the surface due to chemical degradation in ambient conditions remains a major impediment to its prospective applications. Early studies were limited by the degradation of black phosphorous surfaces in air. Recently, several robust strategies have been developed to mitigate these issues, and these novel developments can potentially allow researchers to exploit the extraordinary properties of this material and devices made out of it. Here, the fundamental chemistry of BP degradation and the tremendous progress made to address this issue are extensively reviewed. Device performances of encapsulated BP are also compared with nonencapsulated BP. In addition, BP possesses sensitive anisotropic photophysical surface properties such as excitons, surface plasmons/phonons, and topologically protected and Dirac semi-metallic surface states. Ambient degradation as well as any passivation method used to protect the surface could affect the intrinsic surface properties of BP. These properties and the extent of their modifications by both the degradation and passivation are reviewed.
机译:从基础科学的角度来看,黑磷(BP)是具有迷人的表面和电子特性的材料的典型示例。它具有非同寻常的平面各向异性电,光学和振动状态,以及可调节的带隙。然而,由于在环境条件下化学降解而导致的表面不稳定性仍然是其预期应用的主要障碍。早期研究受到空气中黑色磷表面降解的限制。最近,已经开发出了几种有效的策略来缓解这些问题,并且这些新颖的进展可能使研究人员能够利用这种材料和由其制成的设备的非凡性能。在此,对BP降解的基本化学原理和解决该问题的巨大进展进行了广泛的综述。还将封装的BP的设备性能与未封装的BP进行了比较。此外,BP具有敏感的各向异性光物理表面特性,例如激子,表面等离激元/声子,以及受拓扑保护的Dirac半金属表面态。环境降解以及用于保护表面的任何钝化方法都可能影响BP的固有表面性能。回顾了这些性质及其通过降解和钝化作用改性的程度。

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