Single-crystalline branched zinc phosphide nanostructures: Synthesis, properties, and optoelectronic devices

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Abstract

Hierarchical tree-shaped nanostructures, nanobelts, and nanowires of Zn 3P 2 were synthesized in a thermal assisted laser ablation process. All nanostructures are tetragonal phased Zn 3P 2 with excellent crystallinity and are free from an oxidization layer according to electron microscopy and X-ray diffraction analyses. Optical measurement revealed a strong absorption from the ultraviolet to near-infrared regions. Optoelectronic devices fabricated using individual nanowires demonstrate a high sensitivity and rapid response to impinging light. A crossed heterojunction of an n-type ZnO nanowire and a p-type Zn 3P 2 nanowire has been characterized, and it offers a great potential for a high efficient spatial resolved photon detector. © 2007 American Chemical Society.

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Yang, R., Chueh, Y. L., Morber, J. R., Snyder, R., Chou, L. J., & Wang, Z. L. (2007). Single-crystalline branched zinc phosphide nanostructures: Synthesis, properties, and optoelectronic devices. Nano Letters, 7(2), 269–275. https://doi.org/10.1021/nl062228b

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