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Defect-Assisted Broad-Band Photosensitivity with High Responsivity in Au/Self-Seeded TiO2 NR/Au-Based Back-to-Back Schottky Junctions

机译:缺陷辅助宽带光敏性,具有高响应性的AU /自播式TiO2 NR / Au的背靠背肖特基联结

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TiO2 nanorods (NRs) have generated much interest for both fundamental understanding of defect formation and technological applications in energy harvesting, optoelectronics, and catalysis. Herein, we have grown TiO2 NR films on glass substrates using a self-seeded approach and annealed them in H2 ambient to modify their surface defects. It has been shown that broad-band photosensing properties of Au/self-seeded TiO2 NR/Au-based two back-to-back Schottky junctions (SJs) for a broad wavelength of light are much superior as compared to those of the pristine and the control samples. Photoresponsivity values for the H2-annealed sample are 0.42, 0.71, 0.07, and 0.08 A/W for detecting, respectively, 350, 400, 470, and 570 nm lights. Very low dark current and high photocurrent lead to a gain value as high as 1.85 × 104 for 400 nm light. Unprecedentedly modified NR-based SJs show excellent photoresponsivity for detecting as low as 25, 36, 48, and 28 μW/cm2 power densities of 350, 400, 470, and 570 nm lights, respectively. It is found that Ti3+ defects play a key role in an efficient photoelectron transfer from TiO2 to Au. Our work, for the first time, highlights the simplicity and reveals the rationale behind the excellent properties of Au/self-seeded TiO2 NR film/Au back-to-back SJs.
机译:TiO2纳米棒(NRS)对缺陷形成和技术应用的基本理解产生了很多兴趣,在能量收集,光电子学和催化中。在此,我们使用自接近方法在玻璃基板上生长TiO2 NR膜,并在H 2环境中退火以改变它们的表面缺陷。已经表明,与原始和原始和相比,用于宽波长光的Au /自接种TiO2 NR / Au的两次背对背肖特基结(SJ)的宽带光囊特性与原始和对照样品。 H2退火样品的光响应性值分别为0.42,0.71,0.07和0.08A / W,分别为350,400,470和570 nm灯。非常低的暗电流和高光电流导致高达1.85×104的增益值,400 nm光。前所未有的修改的基于NR的SJS分别显示出低至25,36,48和28μW/ cm2电源密度的优异光反对子,分别为350,400,470和570nm灯。发现Ti3 +缺陷在从TiO2到Au的有效光电子转移中发挥着关键作用。我们的工作首次突出了简单性,并揭示了Au /自种子TiO2 NR薄膜/ Au背靠背SJ的优异性能背后的理由。

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