| Literature DB >> 27960450 |
Yiping Wang, Xin Sun, Ravichandran Shivanna1, Yunbo Yang, Zhizhong Chen, Yuwei Guo, Gwo-Ching Wang, Esther Wertz, Felix Deschler1, Zhonghou Cai2, Hua Zhou2, Toh-Ming Lu, Jian Shi.
Abstract
One-dimensional nanoscale epitaxial arrays serve as a great model in studying fundamental physics and for emerging applications. With an increasing focus laid on the Cs-based inorganic halide perovskite out of its outstanding material stability, we have applied vapor phase epitaxy to grow well aligned horizontal CsPbX3 (X: Cl, Br, or I or their mixed) nanowire arrays in large scale on mica substrate. The as-grown nanowire features a triangular prism morphology with typical length ranging from a few tens of micrometers to a few millimeters. Structural analysis reveals that the wire arrays follow the symmetry of mica substrate through incommensurate epitaxy, paving a way for a universally applicable method to grow a broad family of halide perovskite materials. The unique photon transport in the one-dimensional structure has been studied in the all-inorganic Cs-based perovskite wires via temperature dependent and spatially resolved photoluminescence. Epitaxy of well oriented wire arrays in halide perovskite would be a promising direction for enabling the circuit-level applications of halide perovskite in high-performance electro-optics and optoelectronics.Entities:
Keywords: Halide; epitaxy; incommensurate; perovskite; photon; transport
Year: 2016 PMID: 27960450 DOI: 10.1021/acs.nanolett.6b04297
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189