Controllable synthesis of ultrathin vanadium oxide nanobelts via an EDTA-mediated hydrothermal process

被引:4
作者
Qin, Yu-Xiang [1 ]
Liu, Cheng [1 ]
Xie, Wei-Wei [1 ]
Cui, Meng-Yang [1 ]
机构
[1] Tianjin Univ, Sch Elect & Informat Engn, Tianjin 300072, Peoples R China
基金
中国国家自然科学基金;
关键词
semiconductors; nanobelt; crystal growth; gas sensor; LITHIUM-ION BATTERIES; ELECTROCHEMICAL PROPERTIES; PENTOXIDE NANOBELTS; NANOSTRUCTURES; BEHAVIOR; ORTHOVANADATE; GROWTH;
D O I
10.1088/1674-1056/25/2/027307
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Ultrathin VO2 nanobelts with rough alignment features are prepared on the induction layer-coated substrates by an ethylenediaminetetraacetic acid (EDTA)-mediated hydrothermal process. EDTA acts as a chelating reagent and capping agent to facilitate the one-dimensional (1D) preferential growth of ultrathin VO2 nanobelts with high crystallinities and good uniformities. The annealed induction layer and concentration of EDTA are found to play crucial roles in the formation of aligned and ultrathin nanobelts. Variation in EDTA concentration can change the VO2 morphology of ultrathin nanobelts into that of thick nanoplates. Mild annealing of ultrathin VO2 nanobelts at 350 degrees C in air results in the formation of V2O5 nanobelts with a nearly unchanged ultrathin structure. The nucleation and growth mechanism involved in the formations of nanobelts and nanoplates are proposed. The ethanol gas sensing properties of the V2O5 nanobelt networks-based sensor are investigated in a temperature range from 100 degrees C to 300 degrees C over ethanol concentrations ranging from 3 ppm to 500 ppm. The results indicate that the V2O5 nanobelt network sensor exhibits high sensitivity, good reversibility, and fast responserecovery characteristics with an optimal working temperature of 250 degrees C.
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页数:5
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