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Atomic force microscopy: Emerging illuminated and operando techniques for solar fuel research

机译:原子力显微镜:出现的照明和用于太阳能燃料研究的操作公司技术

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Integrated photoelectrochemical devices rely on the synergy between components to efficiently generate sustainable fuels from sunlight. The micro- and/or nanoscale characteristics of the components and their interfaces often control critical processes of the device, such as charge-carrier generation, electron and ion transport, surface potentials, and electrocatalysis. Understanding the spatial properties and structure-property relationships of these components can provide insight into designing scalable and efficient solar fuel components and systems. These processes can be probed ex situ or in situ with nanometer-scale spatial resolution using emerging scanning-probe techniques based on atomic force microscopy (AFM). In this Perspective, we summarize recent developments of AFM-based techniques relevant to solar fuel research. We review recent progress in AFM for (1) steady-state and dynamic light-induced surface photovoltage measurements; (2) nanoelectrical conductive measurements to resolve charge-carrier heterogeneity and junction energetics; (3) operando investigations of morphological changes, as well as surface electrochemical potentials, currents, and photovoltages in liquids. Opportunities for research include: (1) control of ambient conditions for performing AFM measurements; (2) in situ visualization of corrosion and morphological evolution of electrodes; (3) operando AFM techniques to allow nanoscale mapping of local catalytic activities and photo-induced currents and potentials.
机译:集成的光电化学器件依靠组件之间的协同作用,从阳光下有效地产生可持续的燃料。组件和/或纳米级特性及其接口通常控制装置的关键过程,例如电荷载流子生成,电子和离子传输,表面电位和电常见。了解这些组件的空间特性和结构性质关系可以在设计可扩展和高效的太阳能燃料元件和系统方面提供深入。可以使用基于原子力显微镜(AFM)的新出现的扫描探针技术来探测以外的纳米尺度空间分辨率的原位或原位。在这种观点中,我们总结了与太阳能燃料研究相关的基于AFM的技术的最新发展。我们审查了最近的AFM进展(1)稳态和动态光诱导的表面光电测量值; (2)纳米电导率测量以解析电荷载体异质性和结量的能量; (3)液体中的形态变化以及表面电化学电位,电流和光伏的调查。研究机会包括:(1)控制环境条件以进行AFM测量; (2)原位可视化电极的腐蚀和形态学演变; (3)操作数AFM技术允许纳米级映射局部催化活性和光诱导的电流和潜力。

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