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工作于正向和反向偏置的光电倍增型窄带有机光电探测器。

Photomultiplication type narrowband organic photodetectors working at forward and reverse bias.

作者信息

Miao Jianli, Zhang Fujun, Du Mingde, Wang Wenbin, Fang Ying

机构信息

Key Laboratory of Luminescence and Optical Information, Ministry of Education, Beijing Jiaotong University, Beijing 100044, P. R. China.

出版信息

Phys Chem Chem Phys. 2017 Jun 7;19(22):14424-14430. doi: 10.1039/c7cp01969f.

DOI:10.1039/c7cp01969f
PMID:28530748
Abstract

It is a great challenge to obtain narrowband and photomultiplication (PM) type organic photodetectors (OPDs) without optical filters due to the broad absorption range and large exciton binding energy of organic materials. Narrowband OPDs with the special structure of ITO/PFN-OX/P3HT : PCBM (100 : 1,wt/wt)/Al were successfully fabricated with different active layer thicknesses, exhibiting a tunable response window and PM phenomenon under bi-directional bias. The OPDs exhibit U-shaped EQE spectra with two narrowband response windows under forward bias and a single narrowband response window under reverse bias. The best EQE of the optimized OPDs with a 4.0 μm thick active layer approaches 7160% or 8180% for 340 nm or 650 nm light illumination at 60 V and 1640% for 665 nm light illumination at -60 V, respectively. The most important features of the optimized OPDs is that the full width at half-maximum (FWHM) of their response windows is less than 30 nm under bi-directional biases, which can be well maintained at large bias. The PM type narrowband OPDs working at bi-directional bias are the first to be reported with a tunable response range, further indicating that the density of the electrons trapped in PCBM near the hole injection electrode plays the key role in determining the interfacial band bending for hole tunneling injection from the external circuit.

摘要

由于有机材料的吸收范围宽且激子束缚能大,因此在不使用光学滤波器的情况下获得窄带和光电倍增(PM)型有机光电探测器(OPD)是一项巨大挑战。成功制备了具有ITO/PFN-OX/P3HT : PCBM(100 : 1,重量/重量)/Al特殊结构的窄带OPD,其具有不同的有源层厚度,在双向偏压下表现出可调谐的响应窗口和PM现象。这些OPD在正向偏压下呈现具有两个窄带响应窗口的U形EQE光谱,在反向偏压下呈现单个窄带响应窗口。对于有源层厚度为4.0μm的优化OPD,在60V下340nm或650nm光照时最佳EQE分别接近7160%或8180%,在-60V下665nm光照时为1640%。优化OPD的最重要特征是其响应窗口在双向偏压下的半高宽(FWHM)小于30nm,并且在大偏压下可以很好地保持。双向偏压下工作的PM型窄带OPD首次被报道具有可调谐的响应范围,这进一步表明空穴注入电极附近PCBM中捕获的电子密度在确定从外部电路进行空穴隧穿注入的界面能带弯曲中起关键作用。

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