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首页> 外文期刊>Catalysis science & technology >One-step calcination synthesis of WC-Mo2C heterojunction nanoparticles as novel H-2-production cocatalysts for enhanced photocatalytic activity of TiO2
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One-step calcination synthesis of WC-Mo2C heterojunction nanoparticles as novel H-2-production cocatalysts for enhanced photocatalytic activity of TiO2

机译:WC-Mo2C一步煅烧合成异质结纳米颗粒作为小说为增强H-2-production:二氧化钛光催化活性的

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摘要

Hexagonal molybdenum carbide (Mo2C) as a high-efficiency non-noble cocatalyst has been widely applied in the photocatalytic H-2-generation area due to its platinum-like H+-adsorption potential, high thermal stability, and excellent electrochemistry properties. However, Mo2C possesses relatively low electrical conductivity and strong Mo-H bonds, resulting in a limited H-2-generation activity of Mo2C-modified photocatalysts. In this paper, a tungsten carbide-molybdenum carbide (WC-Mo2C) heterojunction was constructed by introducing WC with high electrical conductivity into Mo2C for weakening the Mo-H bond. The carbon-coated WC-Mo2C heterojunction nanoparticles (WC-Mo2C@C) by one-step calcination of a controllable ratio mixture (melamine (MA), (NH4)(6)Mo7O24 and (NH4)(6)H2W12O40) at 800 degrees C were decorated on a TiO2 surface to form WC-Mo2C@C/TiO2 for the enhanced hydrogen-production performance of TiO2. The H-2-production results showed that the highest H-2-production rate of WC-Mo2C@C/TiO2 reached 903 mu mol h(-1) g(-1) (AQE = 2.70%), which was 90.3, 3.6 and 2.5 times higher than that of TiO2, Mo2C@C/TiO2, and WC@C/TiO2, respectively. The enhanced performance of WC-Mo2C@C/TiO2 can be attributed to the addition of W element being able to simultaneously increase the conductivity of Mo2C and weaken the Mo-H bond for boosting the photocatalytic H-2-production reaction of TiO2. This work provides a feasible strategy to explore efficient Mo2C-modified photocatalysts in the H-2-generation field.
机译:六角碳化钼(Mo2C)高效的非贵金属助催化剂广泛应用在光催化由于其独特H-2-generation区域H +吸附潜力,高的热稳定性,和优秀的电化学性能。然而,Mo2C具有相对较低的电电导率和强大Mo-H债券,导致H-2-generation活动有限Mo2C-modified催化剂。碳化钨carbide-molybdenum (WC-Mo2C)异质结是由引入WC与高导电性Mo2C削弱Mo-H债券。WC-Mo2C异质结纳米颗粒(WC-Mo2C@C)可控的一步煅烧比率混合物(三聚氰胺(MA), (6) Mo7O24和(NH4)(NH4) (6) H2W12O40)在800摄氏度是装饰在二氧化钛表面形成WC-Mo2C@C /二氧化钛提高二氧化钛的制氢性能。H-2-production结果显示最高H-2-production WC-Mo2C@C /二氧化钛达到903亩摩尔h g (1) (1) (AQE = 2.70%),这是90.3、3.6和2.5倍二氧化钛,Mo2C@C /二氧化钛,WC@C /二氧化钛,分别。WC-Mo2C@C /二氧化钛可以归因于之外W元素能够同时进行增加Mo2C的电导率和削弱Mo-H债券促进光催化H-2-production二氧化钛的反应。提供了一个探索有效可行的策略Mo2C-modified催化剂的H-2-generation字段。

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