CoSSe/g-C3N4的简单构造,用于高效的光催化H2进化过程中的斯科特基结
Xiuxiang Zhao1, Zhuonan Lei1, Xuanqi Wang1
1Shaanxi Key Laboratory for Carbon Neutral Technology/School of Chemical Engineering, Northwest University, Xi'an 710069, P. R. China.
这项研究合成了CoSSe/CN复合物,用于增强光催化生产. 30%重量的CoSSe/CN复合物实现了演变速度的93倍增加,归因于斯科特基连接和改进的电荷分离.
科学领域:
- 材料科学 材料科学 材料科学
- 催化剂是一种催化剂.
- 摄影化学的使用.
背景情况:
- 开发高效的光催化剂用于生产对于可持续能源至关重要.
- 石墨碳化物 (g-C3N4) 是一个有前途的光催化剂,但受到有限的电荷分离和低活性的影响.
- 催化剂对于提高光催化系统效率至关重要.
研究的目的:
- 为增强光催化生产合成和表征COSSe/CN复合材料.
- 研究舒特基结在改善电荷分离和催化活性方面的作用.
- 为了评估CoSSe/CN复合物的性能在演化反应中.
主要方法:
- CoSSe共催化剂的顺序热水化合成.
- 高温热聚凝以获得g-C3N4 (CN) 光催化剂.
- 基于溶液的物理干燥方法制造COSSe/CN复合材料.
主要成果:
- 30%重量的CoSSe/CN复合物表现出9675μmolg-1h-1的光催化H2演化速率,比裸体CN增强93倍.
- 在CoSSe/CN接口形成的Schottky结显著提高了电荷分离的效率.
- CoSSe充当了电子储存站点,引入了更具反应性的站点,并降低了H2生产的激活能量.
结论:
- CoSSe/CN复合材料在光催化生产方面表现出卓越的性能.
- 肖特基结是增强电荷分离和整体光催化活性的关键.
- 硫化材料在光催化生产中具有重要的应用潜力.
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