窄带
材料科学
光电子学
兴奋剂
光电探测器
红外线的
近红外光谱
吸收(声学)
光子学
量子效率
光子
波长
电子
光学
物理
量子力学
复合材料
作者
Quan Liu,Stefan Zeiske,Xueshi Jiang,Derese Desta,Sigurd Mertens,Sam Gielen,Rachith Shanivarasanthe Nithyananda Kumar,H.‐G. Boyen,Ardalan Armin,Koen Vandewal
标识
DOI:10.1038/s41467-022-32845-5
摘要
Inherently narrowband near-infrared organic photodetectors are highly desired for many applications, including biological imaging and surveillance. However, they suffer from a low photon-to-charge conversion efficiencies and utilize spectral narrowing techniques which strongly rely on the used material or on a nano-photonic device architecture. Here, we demonstrate a general and facile approach towards wavelength-selective near-infrared phtotodetection through intentionally n-doping 500-600 nm-thick nonfullerene blends. We show that an electron-donating amine-interlayer can induce n-doping, resulting in a localized electric field near the anode and selective collection of photo-generated carriers in this region. As only weakly absorbed photons reach this region, the devices have a narrowband response at wavelengths close to the absorption onset of the blends with a high spectral rejection ratio. These spectrally selective photodetectors exhibit zero-bias external quantum efficiencies of ~20-30% at wavelengths of 900-1100 nm, with a full-width-at-half-maximum of ≤50 nm, as well as detectivities of >1012 Jones.
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