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Si microstructures laminated with a nanolayer of TiO2 as long-term stable and effective photocathodes in PEC devices

机译:Si nanolayer的微观结构层压二氧化钛作为长期稳定和有效的光电阴极在压电陶瓷设备

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Photoelectrochemical (PEC) water splitting is one of the most emerging fields for green energy generation and storage. Here we show a study of microstructured Si covered by a TiO2 nano-layer. The microstructures are prepared by galvanostatic selective etching of Si. The TiO2 nano-layer was deposited by atomic layer deposition (ALD) to protect the microstructured photocathode against corrosion. The obtained microstructured photocathode showed a shift in the onset potential of 400 mV towards the anodic direction compared to bare Si. The Si microstructures laminated with a nano-layer of TiO2 show stability over 60 hours of measurement.
机译:光解水制氢研究光电化学(压电)就是其中之一大多数新兴领域的绿色能源生成和存储。组织如果由二氧化钛纳米层覆盖。微观结构是由恒电流如果选择性蚀刻。原子层沉积(ALD)沉积保护微结构光电阴极腐蚀。光电阴极显示发生的转变潜在的400 mV向阳极方向而裸露的硅。叠层二氧化钛纳米层的节目稳定超过60小时的测量。

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