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Native Surface Oxides Featured Liquid Metals for Printable Self-Powered Photoelectrochemical Device

机译:适用于可印刷自供电光电化学装置的天然表面氧化物精选液态金属

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摘要

Constructing high-performance photo-electrodes by patterning the photo-active semiconducting components with desirable texture and architecture is one of the most promising approaches to achieve the practical and scale-up application of photo-electric or photoelectrochemical (PEC) devices. However, it is a still big challenge to efficiently and effectively handle nano-structural semiconducting materials into intergraded circuit devices, displaying good electric-contact and stability. Here, a facile manufacture strategy for fabricating native metal-oxides based photo-electrodes by directly printing Ga-based liquid metals is explored. The PEC device, functionalized by the native Ga-oxide functional layer, exhibits self-powered photo-detection behaviors and presents fast photo-electric responsibility in response to the simulated Sunlight illumination. This printable PEC device shows good potential for high sensitive self-powered photo-detector and provides a flexible and versatile approach for the design and fabrication of novel electrode structures.
机译:通过图案化具有期望的纹理和架构的光敏半导体组件来构建高性能光电电极,是实现光电或光电化学(PEC)器件的实际应用和按比例放大应用的最有希望的方法之一。然而,如何有效地将纳米结构半导体材料处理到分级电路器件中,显示出良好的电接触和稳定性仍然是一个很大的挑战。在此,探索了通过直接印刷Ga基液态金属来制造基于天然金属氧化物的光电极的简便制造策略。通过本机Ga氧化物功能层功能化的PEC器件表现出自供电的光检测行为,并响应模拟的阳光照射而表现出快速的光电响应。这种可印刷的PEC器件在高灵敏度自供电光电探测器方面显示出良好的潜力,并为新型电极结构的设计和制造提供了灵活而通用的方法。

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