JOURNAL ARTICLE

High-Quality Ultralong Sb2Se3 and Sb2S3 Nanoribbons on a Large Scale via a Simple Chemical Route

Ying YuRH WangQing ChenLian‐Mao Peng

Year: 2006 Journal:   The Journal of Physical Chemistry B Vol: 110 (27)Pages: 13415-13419   Publisher: American Chemical Society

Abstract

Large-scale ultralong single-crystalline Sb2Se3 and Sb2S3 nanoribbons were prepared respectively by reacting SbCl3 with selenium and sulfur powders in glycol solution. Both Sb2Se3 and Sb2S3 nanoribbons are usually hundreds of microns in length, and the structures of the nanoribbons are determined to be of the orthorhombic phases. The Sb2Se3 nanoribbons are typically 100-300 nm in width and 20-60 nm in thickness and grow along the [12] direction. Sb2S3 nanoribbons are wider than Sb2Se3 nanoribbons; Sb2S3 nanoribbons are about 200-500 nm in width and grow along the [001] direction. The growth mechanism of the nanoribbons is investigated based on high-resolution transmission electron microscopy (HRTEM) observations. Optical absorption experiment reveals that Sb2Se3 and Sb2S3 nanoribbons are two semiconductors with bandwidth Eg approximately 1.15 eV and Eg approximately 1.56 eV, respectively.

Keywords:
High-resolution transmission electron microscopy Orthorhombic crystal system Materials science Graphene nanoribbons Transmission electron microscopy Semiconductor Nanotechnology Optoelectronics Crystallography Condensed matter physics Chemistry Crystal structure Physics

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Topics

Chalcogenide Semiconductor Thin Films
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Quantum Dots Synthesis And Properties
Physical Sciences →  Materials Science →  Materials Chemistry
Advanced Semiconductor Detectors and Materials
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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