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Superior Photo-thermionic electron Emission from Illuminated Phosphorene Surface

机译:发光磷表面产生的卓越光热电子发射

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摘要

This work demonstrates that black phosphorene, a two dimensional allotrope of phosphorus, has the potential to be an efficient photo-thermionic emitter. To investigate and understand the novel aspects we use a combined approach in which ab initio quantum simulation tools are utilized along with semiclassical description for the emission process. First by using density functional theory based formalism, we study the band structure of phosphorene. From the locations of electronic bands, and band edges, we estimate the Fermi level and work function. This leads us to define a valid material specific parameter space and establish a formalism for estimating thermionic electron emission current from phosphorene. Finally we demonstrate how the emission current can be enhanced substantially under the effect of photon irradiation. We observe that photoemission flux to strongly dominate over its coexisting counterpart thermionic emission flux. Anisotropy in phosphorene structure plays important role in enhancing the flux. The approach which is valid over a much wider range of parameters is successfully tested against recently performed experiments in a different context. The results open up a new possibility for application of phosphorene based thermionic and photo-thermionic energy converters.
机译:这项工作证明了黑色磷光体(一种磷的二维同素异形体)具有成为有效的光热电子发射体的潜力。为了研究和理解新颖的方面,我们使用一种结合的方法,其中从头开始使用量子模拟工具以及针对发射过程的半经典描述。首先,利用基于密度泛函理论的形式论,研究了磷的能带结构。从电子频带的位置和频带边缘,我们估计费米能级和功函数。这使我们定义了有效的材料特定参数空间,并建立了一种形式,用于估算磷的热电子发射电流。最后,我们演示了如何在光子辐照的作用下大幅提高发射电流。我们观察到,光发射通量在其共存的对应的热电子发射通量上占据了主导地位。磷结构的各向异性在提高通量方面起着重要作用。在不同背景下,针对最近执行的实验成功地测试了在更广泛的参数范围内有效的方法。结果为基于磷的热电子和光热电子能量转换器的应用开辟了新的可能性。

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