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Time-Resolved X-Ray Photoelectron Spectroscopy Techniques For Real-Time Studies Of Interfacial Charge Transfer Dynamics

机译:时间分辨的X射线光电子能谱技术,用于界面电荷转移动态的实时研究

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摘要

X-ray based spectroscopy techniques are particularly well suited to gain access to local oxidation states and electronic dynamics in complex systems with atomic pinpoint accuracy. Traditionally, these techniques are applied in a quasi-static fashion that usually highlights the steady-state properties of a system rather than the fast dynamics that often define the system function on a molecular level. Novel x-ray spectroscopy techniques enabled by free electron lasers (FELs) and synchrotron based pump-probe schemes provide the opportunity to monitor intramolecular and interfacial charge transfer processes in real-time and with element and chemical specificity. Two complementary time-domain xray photoelectron spectroscopy techniques are presented that are applied at the Linac Coherent Light Source (LCLS) and the Advanced Light Source (ALS) to study charge transfer processes in N3 dye-sensitized ZnO semiconductor nanocrystals, which are at the heart of emerging light-harvesting technologies.
机译:基于X射线的光谱技术特别适合于获得具有原子定位精度的复杂系统中的局部氧化状态和电子动力学。传统上,这些技术以准静态方式应用,该技术通常突出显示系统的稳态特性,而不是通常在分子水平上定义系统功能的快速动态。由自由电子激光器(FEL)和同步基于同步的泵探针方案的新型X射线光谱技术提供了在实时和元素和化学特异性中监测分子内和界面电荷转移过程的机会。提出了两个互补时域X射线光电子能谱技术,其在LinaC相干光源(LCLS)和先进的光源(ALS)上施加,以研究N3染料敏化ZnO半导体纳米晶体中的电荷转移方法,这是心脏新兴光收获技术。

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