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半导体黑磷:合成、输运性质及电子应用。

Semiconducting black phosphorus: synthesis, transport properties and electronic applications.

机构信息

School of Electrical and Computer Engineering and Birck Nanotechnology Center, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Chem Soc Rev. 2015 May 7;44(9):2732-43. doi: 10.1039/c4cs00257a. Epub 2014 Oct 13.

Abstract

Phosphorus is one of the most abundant elements preserved in earth, and it comprises a fraction of ∼0.1% of the earth crust. In general, phosphorus has several allotropes, and the two most commonly seen allotropes, i.e. white and red phosphorus, are widely used in explosives and safety matches. In addition, black phosphorus, though rarely mentioned, is a layered semiconductor and has great potential in optical and electronic applications. Remarkably, this layered material can be reduced to one single atomic layer in the vertical direction owing to the van der Waals structure, and is known as phosphorene, in which the physical properties can be tremendously different from its bulk counterpart. In this review article, we trace back to the research history on black phosphorus of over 100 years from the synthesis to material properties, and extend the topic from black phosphorus to phosphorene. The physical and transport properties are highlighted for further applications in electronic and optoelectronics devices.

摘要

磷是在地壳中保存最丰富的元素之一,约占地壳的 0.1%。一般来说,磷有几种同素异形体,其中两种最常见的同素异形体,即白磷和红磷,被广泛用于炸药和安全火柴中。此外,黑磷虽然很少被提及,但作为一种层状半导体,在光学和电子应用方面具有巨大的潜力。值得注意的是,由于范德华结构,这种层状材料在垂直方向上可以被还原为单层原子,被称为磷烯,其物理性质与块状磷烯有很大的不同。在这篇综述文章中,我们追溯了 100 多年来从合成到材料性质的黑磷研究历史,并将主题从黑磷扩展到磷烯。强调了物理和输运性质,以进一步应用于电子和光电子器件。

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