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

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posted on 2024-11-16, 05:29 authored by Yuqing Wang, Yaqi Li, Jingwei Zhang, Jincheng Zhuang, Long Ren, Yi Du
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.

Funding

A 200 keV Analytical Transmission Electron Microscope

Australian Research Council

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Citation

Wang, Y., Li, Y., Zhang, J., Zhuang, J., Ren, L. & Du, Y. (2019). Native Surface Oxides Featured Liquid Metals for Printable Self-Powered Photoelectrochemical Device. Frontiers In Chemistry, 7 356-1-356-7.

Journal title

Frontiers in Chemistry

Volume

7

Issue

MAY

Language

English

RIS ID

136133

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