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High Performance BiOCl Nanosheets/TiO_2 Nanotube Arrays Heterojunction UV Photodetector: The Influences of Self-Induced Inner Electric Fields in the BiOCl Nanosheets

机译:高性能BiOCl纳米片/ TiO_2纳米管阵列异质结紫外光电探测器:BiOCl纳米片中自感应内部电场的影响

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BiOCl nanosheets/TiO2 nanotube arrays heterojunction UV photodetector (PD) with high performance is fabricated by a facile anodization process and an impregnation method. The heterojunction at the interface and the internal electric fields in the BiOCl nanosheets faciliate the separation of photogenerated charge carriers and regulate the transportation of the electrons. Compared with the large dark current (approximate to 10(-5) A), low on/off ratio (8.5), and slow decay time (60 s) of the TiO2 PD, the optimized heterojunction PD (6-BiOCl-TiO2) yields dramatically decreased dark current (approximate to 1 nA), ultrahigh on/off ratio (up to 2.2 x 10(5)), and fast decay speed (0.81 s) under 350 nm light illumination at -5 V. Moreover, it exhibits an increased responsivity of 41.94 A W-1, a remarkable detectivity (D*) of 1.41 x 10(14) Jones, and a high linear dynamic range of 103.59 dB. The loading amount and growth orientations of the BiOCl nanosheets alter the roles of the self-induced internal electric field in regulating the behaviors of the charge carriers, thus affecting the photoelectric properties of the heterojunction PDs. These results demonstrate that rational construction of novel heterojunctions hold great potentials for fabricating photodetectors with high performance.
机译:通过简便的阳极氧化工艺和浸渍方法,制备出高性能的BiOCl纳米片/ TiO2纳米管阵列异质结紫外光电探测器(PD)。 BiOCl纳米片中界面处的异质结和内部电场促进了光生电荷载流子的分离并调节了电子的传输。与TiO2 PD的大暗电流(大约10(-5)A),低的开/关比(8.5)和缓慢的衰减时间(> 60 s)相比,优化的异质结PD(6-BiOCl-TiO2 )产生显着降低的暗电流(大约1 nA),超高的开/关比(高达2.2 x 10(5))和在-5 V的350 nm光照下的快速衰减速度(0.81 s)。表现出41.94 A W-1的更高的响应度,1.41 x 10(14)Jones的显着检测率(D *)和103.59 dB的高线性动态范围。 BiOCl纳米片的负载量和生长方向改变了自感应内部电场在调节电荷载流子行为方面的作用,从而影响了异质结PD的光电性能。这些结果表明,合理构造新型异质结具有制造高性能光电探测器的巨大潜力。

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