由量子封闭实现的CsPbBr3纳米晶体的三重能量转移
Xiao Luo1, Runchen Lai1, Yulu Li1
1State Key Laboratory of Molecular Reaction Dynamics and Dynamics Research Center for Energy and Environmental Materials , Dalian Institute of Chemical Physics, Chinese Academy of Sciences , Dalian , Liaoning 116023 , China.
Journal of the American Chemical Society
|March 1, 2019
概括
量子封闭对于矿纳米晶体 (NC) 到多环芳 (PAH) 的三重能量转移至关重要. 这一发现突显了NC大小对于高效的能量传输的重要性,这对于光子上转换等应用至关重要.
科学领域:
- 材料科学
- 纳米技术
- 摄影化学
背景情况:
- 化 PeroVskite 纳米晶体 (NC) 通过尺寸 (量子封闭) 或组成提供可调节的光谱特性. 通过离子交换进行组合调整是常见的,通常会掩盖量子束的作用.
- 多环芳 (PAH) 是各种光化学应用中的重要分子.
研究的目的:
- 调查矿NC中量子封闭的必要性,以便有效地将三重能量转移到PAH.
- 阐明矿NC和PAH之间的TET机制.
主要方法:
- 在化 (CsPbBr3) NC-pyrene混合物上使用静态和瞬态光谱.
- 分析了NC大小,驱动力和光谱重叠对TET率的影响.
- 与NC表面的载体概率密度相关的TET率.
主要成果:
- 仅在小规模的量子受限CsPbBr3NC中观察到有效的TET.
- 大小依赖的驱动力和光谱重叠对TET率的影响最小.
- TET率与NC表面的载体概率密度有线依赖,表明Dexter类机制.
结论:
- 量子封闭是使矿NC转化为PAH的高效德克斯特型TET的一个关键因素.
- 这种能量转移机制有效地将激发能量转化为PAH中的长寿命三胞胎.
- 这些发现为光子上转化和光电还原催化中的应用开辟了道路.
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