Production of Magnetic Arsenic-Phosphorus Alloy Nanoribbons with Small Band Gaps and High Hole Conductivities

小带隙高空穴电导率磁性砷磷合金纳米带的制备

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作者:Feng Fei Zhang, Eva Aw, Alexander G Eaton, Rebecca R C Shutt, Juhwan Lim, Jung Ho Kim, Thomas J Macdonald, Cesar Iii D L Reyes, Arjun Ashoka, Raj Pandya, Oliver D Payton, Loren Picco, Caroline E Knapp, Furio Corà, Akshay Rao, Christopher A Howard, Adam J Clancy

Abstract

Quasi-1D nanoribbons provide a unique route to diversifying the properties of their parent 2D nanomaterial, introducing lateral quantum confinement and an abundance of edge sites. Here, a new family of nanomaterials is opened with the creation of arsenic-phosphorus alloy nanoribbons (AsPNRs). By ionically etching the layered crystal black arsenic-phosphorus using lithium electride followed by dissolution in amidic solvents, solutions of AsPNRs are formed. The ribbons are typically few-layered, several micrometers long with widths tens of nanometers across, and both highly flexible and crystalline. The AsPNRs are highly electrically conducting above 130 K due to their small band gap (ca. 0.035 eV), paramagnetic in nature, and have high hole mobilities, as measured with the first generation of AsP devices, directly highlighting their properties and utility in electronic devices such as near-infrared detectors, quantum computing, and charge carrier layers in solar cells.

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