为什么含硫的聚合物光催化剂对水的牺牲性进化如此有效?
Sam A J Hillman1,2, Reiner Sebastian Sprick3,4, Drew Pearce1
1Department of Physics, Centre for Processable Electronics, Imperial College London, South Kensington Campus, London SW7 2AZ, U.K.
Journal of the American Chemical Society
|October 17, 2022
概括
聚合物光催化剂中的二[b,d]硫单元通过控制电荷转移来增强水分离. 通过影响洞和电子转移动力学,
科学领域:
- 材料科学
- 光催化
- 聚合物化学
背景情况:
- Dibenzo[b,d]thiophene硫单位是高性能聚合物光催化剂的关键组成部分.
- 硫单元在优化光催化活性中的确切作用尚不完全理解.
研究的目的:
- 阐明二[b,d]硫含量对光催化生成的关键过程的影响.
- 研究硫单元如何影响聚合物系统中的光吸收,孔转移和电子转移.
主要方法:
- 制造和研究具有系统变化的硫含量的可溶性聚合物.
- 使用过渡吸收光谱,电化学测量,分子动力学和密度功能理论模拟.
- 分析了不同时间尺度上的薄膜,分散和溶液.
主要成果:
- 硫单元通过增加局部电容性来决定孔转移热力学,从而促进三胺 (TEA) 在临界值以上的氧化.
- 在微秒时间尺度上,硫单元作为电子转移点,提取动力学取决于电子与硫的比率.
- 在富含硫的材料中,的演化主要受到电子光生成率的限制,而不是电子提取.
结论:
- Dibenzo[b,d]thiophene硫单元对于高效的聚合物光催化是至关重要的,它控制着孔和电子转移通路.
- 对硫含量的系统控制可以调整光催化性能,这对设计先进的进化催化剂有意义.
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