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Narrowband-Absorption-Type Organic Photodetectors for the Far-Red Range Based on Fullerene-Free Bulk Heterojunctions

机译:基于无富勒烯体异质结的远红外范围的窄带吸收型有机光电探测器

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摘要

Spectrally-selective photodetection via organic semiconductors manifesting narrowband absorption (NBA photodetection) is highly attractive for emerging applications that require ultrathin, lightweight, and low-cost solutions. While successful over mainstream color bands, NBA photodetectors have struggled so far to meet the functional and/or performance demands at longer wavelengths, importantly in the far-red (700-750 nm), a range relevant to diverse applications in analytical biology, medical diagnostics, remote sensing, etc. In consideration of the potential of a nonfullerene-acceptor route to address this challenge, the narrowband photodetection capabilities of SBDTIC, a recently-developed benzodithiophene-based acceptor with narrowband absorption in the far-red, are explored. Two bulk-heterojunction NBA configurations are considered, in which SBDTIC is combined with a donor either absorbing also in the far-red, or transparent through the visible. It is found that the latter configuration provides superior narrowband functionality, with peak detectivity of 1.42 x 10(13) Jones and spectral width of 141 nm-the highest detectivity to date for NBA far-red-selective photodetectors, and the smallest spectral width of all solution-processed implementations. In self-powered operation, such photodetectors additionally present a quasilinear response over a photocurrent range of least four orders of magnitude, and respond in the microsecond range, further evidencing the suitability of this approach to address the wealth of target applications.
机译:通过有机半导体表现出窄带吸收能力的光谱选择性光电检测(NBA光电检测)对于需要超薄,轻巧和低成本解决方案的新兴应用非常有吸引力。尽管在主流色带上取得了成功,但迄今为止,NBA光电探测器一直在努力满足较长波长下的功能和/或性能要求,重要的是在远红光(700-750 nm)中,该范围与分析生物学,医学领域的各种应用相关考虑到非富勒烯受体途径应对这一挑战的潜力,探索了SBDTIC的窄带光电检测功能。SBDTIC是一种最新开发的基于苯并二噻吩的受体,在远红外具有窄带吸收能力。考虑了两种体异质结的NBA配置,其中SBDTIC与供体结合,后者也吸收远红光,或通过可见光透明。结果发现,后一种配置提供了出色的窄带功能,峰值检测率为1.42 x 10(13)Jones,光谱宽度为141 nm,这是NBA远红外选择光电探测器迄今为止最高的检测率,并且光谱宽度最小。所有解决方案处理的实现。在自供电操作中,此类光电检测器还会在至少四个数量级的光电流范围内呈现准线性响应,并在微秒范围内响应,从而进一步证明了这种方法适用于解决大量目标应用的问题。

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