一个自组装的有机/金属交叉点用于水光氧化
Astrid J Olaya1, Terumasa Omatsu2, Jonnathan C Hidalgo-Acosta1
1Laboratory of Physical and Analytical Electrochemistry, EPFL Valais Wallis , École Polytechnique Fédérale de Lausanne , CH-1951 Sion , Switzerland.
Journal of the American Chemical Society
|April 11, 2019
概括
我们展示了TTF和对子离子在微粒上的自组合, 产生p型半导体. 可见光触发有效的水氧化,产生O2和H+,并完全减少TTF+.
科学领域:
- 材料科学
- 电化学
- 摄影化学
背景情况:
- 开发高效的光催化剂是可持续能源的关键.
- 自组装提供了一种创建有序半导体结构的途径,
研究的目的:
- 在微粒上研究四甲 (TTF) 衍生物的现场自组合.
- 探索这些自组件的光催化活性.
主要方法:
- 在水/乙混合物中的微粒上自组装TTF,TTF基离子 (TTF•+) 和BF4或PF6.
- 可见光光激活以诱导水氧化.
- 自组装结构的电化学特征.
主要成果:
- 在微粒上形成p型半导体自组件.
- 根据初始TFT•+度,在可见光光激活时将水氧化为O2和H+.
- 通过水将TTF•+完全降解为TTF.
- Pt微粒作为浮动的微电极,其费米水平由氧化还原物种 (TTF,TTF•+,HTTF+) 确定.
- 在溶液中没有观察到氧化还原物种的分解.
结论:
- 基于Pt微粒的自组装TF系统是有效的可见光驱动的水氧化催化剂.
- 该系统具有很高的效率和稳定性,具有太阳能燃料生产的潜力.
- Pt微粒作为关键组件,调解电子转移和稳定催化组件.
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