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Optical pump — THz probe studies of size-dependent ultrafast charge carrier dynamics in WO3 particles for photoelectrochemical cells

机译:光泵— THz探针研究光电化学电池中WO3颗粒中尺寸相关的超快载流子动力学

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Terahertz (THz) spectroscopy is an excellent non-contact electrical probe of charge injection and conductivity with sub-picosecond time resolution. One may exploit this capability to study a variety of materials, and here we choose to probe the transient photoconductivity of tungsten (VI) oxide (WO3), a wide band gap metal oxide. This semiconductor is of interest in renewable energy research and artificial photosynthesis because it can be used as the photoanode in photoelectrochemical cells. The ultrafast charge carrier dynamics on the picosecond timescale have yet to be investigated by any technique, let alone THz spectroscopy. Our particular interest is in the characterization and dynamics of photoinduced charge carriers that are required for efficient oxidation at the metal oxide/electrolyte interface.
机译:太赫兹(THz)光谱仪是电荷注入和电导率极佳的非接触式电探针,具有亚皮秒级的时间分辨率。人们可能会利用这种能力来研究各种材料,在这里我们选择探究宽带隙金属氧化物钨(VI)(WO3)的瞬态光电导性。这种半导体在可再生能源研究和人工光合作用中引起了人们的兴趣,因为它可以用作光电化学电池中的光阳极。皮秒级的超快载流子动力学尚未通过任何技术进行研究,更不用说太赫兹光谱。我们特别感兴趣的是在金属氧化物/电解质界面进行有效氧化所需的光诱导电荷载流子的表征和动力学。

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