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◆ ACS Applied Materials & Interfaces2026-04-02· Photodetector

A Bias-Tunable Pseudo-Planar Heterojunction Organic Photodetector for Single-Pixel Computational Spectrometer and Filterless Color Sensor

Zhipeng Liu, Wenli Zhang, Xin Wang, Huaxin Zhu, Jinfeng Han, Zheng Wang, Wenwen Qiao

原始摘要(英文原文)· Original abstract
The pursuit of miniaturized spectrometers necessitates device architectures that are both structurally simple and high-performing. This work reports a single-pixel organic computational spectrometer (OCS) based on an organic photodetector (OPD) with a pseudoplanar heterojunction (PPHJ) active layer. Through controlled sequential deposition, a gradient donor–acceptor distribution is achieved, yielding bias-dependent spectral responses with strong nonlinear correlations (Pearson correlation coefficients from −0.07 to 1.00). The OCS achieves a high detectivity of 7.84 × 10 12 Jones and a fast response time of 2.85 μs, enabling accurate reconstruction of monochromatic and broadband spectra across 300–1000 nm range with a normalized root-mean-square error (NRMSE) as low as 0.0034. Moreover, the same device structure serves as a filterless quad-channel color sensor via photocurrent readout at four predefined bias voltages, bypassing the need for spectral filters or complex algorithms. This minimalist design, which delivers high performance from a single active layer, offers significant potential for portable and integrated spectroscopic applications.
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A Bias-Tunable Pseudo-Planar Heterojunction Organic Photodetector for Single-Pixel Computational Spectrometer and Filterless Color Sensor — 科研速览 Science Skim