首页> 外文期刊>Applied Surface Science >Nano tree-like branched structure with α-Ga_2O_3 covered by γ-Al_2O_3 for highly efficient detection of solar-blind ultraviolet light using self-powered photoelectrochemical method
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Nano tree-like branched structure with α-Ga_2O_3 covered by γ-Al_2O_3 for highly efficient detection of solar-blind ultraviolet light using self-powered photoelectrochemical method

机译:纳米树状分支结构,α-GA_2O_3覆盖γ-AL_2O_3,用于使用自动光电化学方法高效地检测太阳盲紫外光

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摘要

For photoelectrochemical ultraviolet detector, carrier recombination, low light trapping efficiency and long-distance charge carries transport are the main factors restricting its detection performance. Herein, a novel tree-like branched structure with alpha-Ga2O3 covered by gamma-Al2O3 has been successfully fabricated by simple two-step hydrothermal treatment and applied into the self-powered photoelectrochemical solar-blind detector. Owning to the introduction of gamma-Al2O3 layer with ultra-wide bandgap to coat outside of alpha-Ga2O3, an energy barrier has been established at the semiconductor/electrolyte interface accelerating the photogenerated carriers separation and thus suppressing interfacial charge recombination. Besides, the obtained tree-like branched structure significantly expands the contact surface area between carries and electrolyte to shorten the distance of charge transport improving response speed and brings a larger specific surface area to capture and scatter incident photons enhancing light absorption. Campared with the pure alpha-Ga2O3, the alpha-Ga2O3-gamma-Al2O3 based on the photoelectrochemical device shows higher responsivity, larger photocurrent density and faster response time to solar-blind ultraviolet signal, some performance improvements exceed 100%, indicating the highly efficient detection.
机译:对于光电化学紫外线检测器,载体复合,低光捕获效率和长距离电荷运输是限制其检测性能的主要因素。这里,通过简单的两步水热处理成功地制造了一种具有γ-Al2O3覆盖的α-Ga2O3的新型树状分支结构,并施加到自动力光电化学太阳盲检测器中。以超宽的带隙引入伽马-Al2O3层以涂覆α-Ga2O3的外部,在半导体/电解质界面中建立了能量屏障,加速光生载体分离,从而抑制界面电荷重组。此外,所获得的树状分支结构显着地扩展了携带和电解质之间的接触表面区域,以缩短电荷传输的距离,提高响应速度,并带来较大的比表面积以捕获和散射入射光子增强光吸收的距离。基于光电化学器件的α-GA2O3-Gamma-Al2O3露营地显示出更高的响应率,更大的光电流密度和更快的太阳能紫外线响应时间,一些性能改善超过100%,表明高效检测。

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