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用于传感应用的溶液处理P3HT:PCBM光电探测器的暗电流密度和光电流密度与光波长、强度及偏置电压的相关性

The Light Wavelength, Intensity, and Biasing Voltage Dependency of the Dark and Photocurrent Densities of a Solution-Processed P3HT:PCBM Photodetector for Sensing Applications.

作者信息

Jhuma Farjana Akter, Harada Kentaro, Misran Muhamad Affiq Bin, Mo Hin-Wai, Fujimoto Hiroshi, Hattori Reiji

机构信息

Major of Device Science and Engineering, Interdisciplinary Graduate School of Engineering Sciences, Kyushu University, Fukuoka 8190395, Japan.

OPERA Solutions Inc., 5-5 Kyudai-shimmachi, Nishi-ku, Fukuoka 8190388, Japan.

出版信息

Nanomaterials (Basel). 2024 Sep 14;14(18):1496. doi: 10.3390/nano14181496.

Abstract

The promising possibility of an organic photodetector (OPD) is emerging in the field of sensing applications for its tunable absorption range, flexibility, and large-scale fabrication abilities. In this work, we fabricated a bulk heterojunction OPD with a device structure of glass/ITO/PEDOT:PSS/P3HT:PCBM/Al using the spin-coating process and characterized the dark and photocurrent densities at different applied bias conditions for red, green, and blue incident LEDs. The OPD photocurrent density exhibited a magnitude up to 2.5-3 orders higher compared to the dark current density at a -1 V bias while it increased by up to 3-4 orders at zero bias conditions for red, green, and blue lights, showing an increasing trend when a higher voltage is applied in the negative direction. Different OPD inner periphery shapes, the OPD to LED distance, and OPD area were also considered to bring the variation in the OPD dark and photocurrent densities, which can affect the on/off ratio of the OPD-LED hybrid system and is a critical phenomenon for any sensing application.

摘要

有机光电探测器(OPD)因其可调谐吸收范围、柔韧性和大规模制造能力,在传感应用领域展现出了广阔的前景。在这项工作中,我们采用旋涂工艺制备了一种具有玻璃/ITO/PEDOT:PSS/P3HT:PCBM/Al器件结构的体异质结OPD,并对红色、绿色和蓝色入射LED在不同施加偏置条件下的暗电流密度和光电流密度进行了表征。在-1 V偏置下,OPD的光电流密度比暗电流密度高2.5至3个数量级,而在零偏置条件下,对于红色、绿色和蓝色光,其光电流密度增加了3至4个数量级,表明在负方向施加更高电压时呈现出增加的趋势。还考虑了不同的OPD内周形状、OPD与LED的距离以及OPD面积,以探究它们对OPD暗电流密度和光电流密度的影响,这会影响OPD-LED混合系统的开/关比,而这对于任何传感应用来说都是一个关键现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea60/11435158/3707d24dc581/nanomaterials-14-01496-g001.jpg

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