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Synthesis of tungsten carbide nanopowders by direct carbonization of tungsten oxide and carbon: Effects of tungsten oxide source on phase structure and morphology evolution
Affiliation:1. School of Materials Science and Engineering, Nanchang University, Nanchang 330031, PR China;2. School of Materials Science and Engineering, Jiangsu University of Science and Technology, Jiangsu 212003, PR China;1. College of Engineering, Mathematics and Physical Sciences, University of Exeter, Exeter EX4 4QF, UK;2. The State Key Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technology, Wuhan 430081, China;3. Institute of Advanced Materials and Nanotechnology, Wuhan University of Science and Technology, Wuhan 430081, China;4. Institute of Advanced Electrochemical Energy, Xi''an University of Technology, Xi''an 710048, China
Abstract:In the paper, WC nanopowders are successfully prepared by carbothermal reduction method, and the effect of tungsten oxide source on the phase structure evolution and products properties of the as-synthesized WC nanopowders has been investigated. Four tungsten oxide powders are chosen as tungsten oxide sources, e.g., rods-like WO3 , WO3 nanopartiles, WO3 micro-particles and WO2.9 micro-particles. Compared with other three tungsten oxide sources, the WO3 micro-particles possesses small particle size, less agglomerates and good dispersity and the uniform tungsten oxide-carbon mixture after ball milling can be easily obtained. The appropriate tungsten oxide source can result in lower processing temperature (≤1200 °C) and shorter holding time (≤3 h). Single-phase WC powders with average particle size of 100 nm and uniform particle distribution can be achieved by micro-particle-like WO3 at 1100 °C for 3 h. The as-prepared WC products by other three tungsten oxide sources exhibit problems of more aggregates, non-uniform particle size and large particle size (250 nm), respectively. In addition, the method can provide a facile, low-cost, efficient, and industrially feasible pathway for large scale preparation of WC nanopowders.
Keywords:Tungsten carbide  Nanopowder synthesis  Tungsten oxide source  Carbothermal reduction  Morphology
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