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High Operating Temperature and Low Power Consumption Boron Nitride Nanosheets Based Broadband UV Photodetector

机译:高工作温度和低功耗硼氮化物纳米电池基宽带紫外线光电探测器

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We extend our work on the use of digitally controlled pulsed laser plasma deposition (PLPD) technique to synthesize high quality, 2-dimensional single crystalline boron nitride nanosheets (BNNSs) at a low substrate temperature for applications in high-performance deep UV photodetectors. The obtained sample consists of a large amount of BNNSs partially overlapping one another with random orientations. Each sheet is composed of a few (from 2 to 10) stacked atomic layers exhibiting high transparency due to its highly ordered hBN crystallinity. Deep UV detectors based on the obtained BNNSs were designed, fabricated, and tested. The bias and temperature effects on the photocurrent strength and the signal-to-noise ratio have been carefully characterized and discussed. A significant shift in the cut off wavelength of the BNNSs based photodetectors was observed suggesting a band gap reduction as a result of the BNNSs’ collective structure. The newly designed photodetector presented exceptional properties: a high sensitivity to weak intensities of radiation in both UVC and UVB range while remaining visible-blind, and a high signal-to-noise ratio operation even at temperatures as high as 400?°C. In addition, the BNNSs based photodetector exhibited potential for self-powered operation.
机译:我们在使用数字控制的脉冲激光等离子体沉积(PLPD)技术的情况下,在高性能深紫色光电探测器中为高质量,二维单晶硼氮化物纳米片(BNNS)合成高质量,二维单晶硼氮化物纳米片(BNNS)。所获得的样品由大量的BNNS组成,其中具有随机取向彼此重叠。每个纸张由少数(从2到10)的堆叠原子层组成,由于其高度有序的HBN结晶度,呈现高透明度。设计,制造和测试基于所获得的BNNS的深紫外探测器。已经仔细描述并讨论了对光电流强度和信噪比的偏差和温度效应。观察到基于BNNSS的光电探测器的切断波长的显着偏移,表明由于BNNSS集体结构而降低了带隙降低。新设计的光电探测器呈现出卓越的性质:在UVC和UVB范围内的辐射弱强度的高灵敏度,同时剩余可见盲,即使在高达400Ω°C的温度下也具有高信噪比操作。另外,基于BNNSS的光电探测器表现出自动操作的潜力。

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