Zhou Xin, Ye Lijuan, Yuan Lai, Zhang Dan, Zhang Hong, Pang Di, Tang Yan, Li Honglin, Li Wanjun, Zeng Heping
Guangyang Bay Laboratory, Chongqing Institute for Brain and Intelligence, Chongqing, 400064, China.
College of Physics and Electronic Engineering, Chongqing Normal University, Chongqing, 401331, China.
Adv Sci (Weinh). 2025 Apr;12(16):e2413074. doi: 10.1002/advs.202413074. Epub 2025 Feb 26.
Underwater imaging technologies are increasingly crucial for environmental monitoring and resource exploration. However, the development of advanced photodetectors for such applications faces significant challenges, including interference from ambient visible and infrared light, adaptation to underwater environments, and cost-effectiveness. Photoelectrochemical-type solar-blind photodetectors (PEC-SBPDs) based on wide bandgap semiconductors have shown great promise in overcoming these challenges. Here, a novel approach to enhance the performance of α-GaO-based PEC-SBPDs is presented for underwater imaging through Mg-doping. By employing a low-cost hydrothermal synthesis technique, Mg-doped α-GaO nanorod arrays are fabricated, which induces the formation of V-Mg complexes that enhances the interfacial catalytic activity and improves the transport of photogenerated carriers. The optimized PEC-SBPDs exhibits a remarkable 435% increase in photocurrent response compared to undoped α-GaO, with a peak responsivity of 34.54 mA W. A 5 × 5 PEC-SBPD array based on Mg-doped α-GaO nanorods is successfully demonstrated for underwater solar-blind imaging, achieving clear and efficient imaging in challenging underwater conditions. This study not only highlights the superior performance of Mg-doped α-GaO in underwater environments but also opens new avenues for the development of high-performance self-powered photodetectors in imaging, sensing, and other related applications.
水下成像技术对于环境监测和资源勘探越来越重要。然而,开发适用于此类应用的先进光电探测器面临重大挑战,包括来自环境可见光和红外光的干扰、适应水下环境以及成本效益。基于宽带隙半导体的光电化学型日盲光电探测器(PEC-SBPD)在克服这些挑战方面显示出巨大潜力。在此,提出了一种通过镁掺杂来提高基于α-GaO的PEC-SBPD性能以用于水下成像的新方法。通过采用低成本的水热合成技术,制备了镁掺杂的α-GaO纳米棒阵列,其诱导形成V-Mg络合物,增强了界面催化活性并改善了光生载流子的传输。优化后的PEC-SBPD与未掺杂的α-GaO相比,光电流响应显著提高了435%,峰值响应度为34.54 mA W。成功展示了基于镁掺杂α-GaO纳米棒的5×5 PEC-SBPD阵列用于水下日盲成像,在具有挑战性的水下条件下实现了清晰高效的成像。这项研究不仅突出了镁掺杂α-GaO在水下环境中的卓越性能,还为成像、传感及其他相关应用中高性能自供电光电探测器的开发开辟了新途径。