TY - JOUR
T1 - High-aspect-ratio single-crystalline porous In2O3 nanobelts with enhanced gas sensing properties
AU - Li, Yansong
AU - Xu, Jing
AU - Chao, Junfeng
AU - Chen, Di
AU - Ouyang, Shuxin
AU - Ye, Jinhua
AU - Shen, Guozhen
PY - 2011/9/14
Y1 - 2011/9/14
N2 - With greatly enhanced surface-to-volume ratios, one-dimensional (1-D) nanostructures are believed to be able to deliver better performance as chemical sensors. In this paper, by using a hydrothermal-annealing process, we reported the synthesis of porous In2O3 nanobelts with a high aspect ratio. By annealing hydrothermally-synthesized single crystalline ultralong InOOH nanobelts, single crystalline porous In2O3 nanobelts with an aspect ratio larger than 100 are obtained on a large scale. The gas sensing properties of the as-prepared porous In2O3 nanobelts were investigated, and they can detect different chemicals (methanol, ethanol, and acetone) down to ppb level. The results also showed that the nanobelts exhibited excellent gas sensing performance in terms of high sensitivity, low detection limit, fast response and recovery times, and sensing selectivity.
AB - With greatly enhanced surface-to-volume ratios, one-dimensional (1-D) nanostructures are believed to be able to deliver better performance as chemical sensors. In this paper, by using a hydrothermal-annealing process, we reported the synthesis of porous In2O3 nanobelts with a high aspect ratio. By annealing hydrothermally-synthesized single crystalline ultralong InOOH nanobelts, single crystalline porous In2O3 nanobelts with an aspect ratio larger than 100 are obtained on a large scale. The gas sensing properties of the as-prepared porous In2O3 nanobelts were investigated, and they can detect different chemicals (methanol, ethanol, and acetone) down to ppb level. The results also showed that the nanobelts exhibited excellent gas sensing performance in terms of high sensitivity, low detection limit, fast response and recovery times, and sensing selectivity.
UR - http://www.scopus.com/inward/record.url?scp=80052058378&partnerID=8YFLogxK
U2 - 10.1039/c1jm11356a
DO - 10.1039/c1jm11356a
M3 - Article
AN - SCOPUS:80052058378
SN - 0959-9428
VL - 21
SP - 12852
EP - 12857
JO - Journal of Materials Chemistry
JF - Journal of Materials Chemistry
IS - 34
ER -