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Updated: May 3, 2026

Using Cyclic Voltammetry, UV-Vis-NIR, and EPR Spectroelectrochemistry to Analyze Organic Compounds
Published on: October 18, 2018
Efficient Wavelength-Selective Self-Powered Organic Photodetectors Based on Electron Acceptors Diluted by Transparent
Nannan Yao1, Jinyang Yu1, Jing Wang2
1State Key Laboratory of Silicon and Advanced Semiconductor Materials, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310058, China.
Abstract:
Organic photodetectors (OPDs) have great potential in optical communication and biomedical imaging. Wavelength-selective response can be achieved by employing filter-free OPDs with various organic semiconductors. Herein, solution-processed OPDs are fabricated with typical electron acceptors (i.e., PC60BM, ITCC, IT4F, BTP-S2, Y6, and IEICO4F) diluted by transparent polymer donor PTAA. The optical profiles of acceptors drive tunable wavelength detection covering ultraviolet (UV), visible (VIS), to near-infrared (NIR) regions. Compared to a silicon photodetector with nearly uniform photoresponse across wavelengths, fine-tuning the composition of OPDs enables wavelength-selective detection in the UV, VIS, and NIR bands, with higher response than that in out-of-band wavelengths. All the detectors realize specific detectivity over 1011 Jones (based on noise current), fast photoresponse time (<10 μs), and linear photocurrent response around 110 dB at zero bias. Additionally, transient absorption spectroscopy confirms efficient charge generation in PTAA:acceptor blends, which is significantly enhanced by the addition of 1,8-diiodooctane. Besides, the mixed molecular orientations induce spontaneous energetic offsets in the neat acceptor phase, further facilitating charge generation. Therefore, our work demonstrates a universal strategy to realize efficient wavelength-selective self-powered OPDs without optical filters.
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