Autonomous Motion Vision with Tri-bulk-heterojunctioned Organic Adaptation Transistor

Автономное зрение движения с органическим адаптационным транзистором с триблочно-гетероструктурой
Daoben Zhu, Liu Z, Chong‐an Di, Ye Zou, Chengyu Zhang, Zepang Zhan, Weijie Wang, Weichen Bai, Wei Wang, Yutao Ge, Yunjiang Zi, Liyao Liu, Xiaojuan Dai
2026-06-29

autonomous route-planning safetyin-sensor moving-object extractionmotion analysis (direction and speed) >99.4%photoadaptation over six orders of magnitudetri-bulk-heterojunctioned organic adaptation transistor
Motion vision is increasingly critical in scenarios such as autonomous driving and embodied intelligence. Existing sensors perform motion analysis and moving‑object extraction as separate tasks, which increases computation and storage needs to challenge highly efficient applications. Here, we design an organic tri-bulk-heterojunctioned adaptation phototransistor (OTAT) that integrates both functionalities in a single device. Notably, the OTAT incorporates a gate-adjacent semiconductor-insulator heterojunction as a photosensitive percolation channel, providing fine-tuned photoadaptation under illumination spanning six orders of magnitude. In imaging experiments, the device exhibits in‑sensor moving‑object extraction with a 45.3% highlight ratio, approaching the capability of the human visual system, while yielding motion analysis accuracy over 99.4% in both direction and speed detection. Importantly, the OTAT-based agents generated the lowest risk in multiple route-planning simulation. These results show that the OTAT effectively bridges the gap between motion extraction and analysis, marking a significant step forward for next-generation in‑sensor motion vision systems. Motion vision sensors typically perform motion analysis and moving-object extraction separately. Here, the authors develop an organic adaptation transistor that simultaneously extracts and analyses moving objects, achieving human-eye-like motion perception and improving safety in autonomous route-planning tasks.
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Agents using OTAT-based sensing produced the lowest risk in multiple autonomous route-planning simulations, indicating improved safety.
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Designed an organic tri-bulk-heterojunctioned adaptation phototransistor (OTAT) that integrates moving-object extraction and motion analysis in a single device.
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In imaging experiments, OTAT performs in-sensor moving-object extraction with a 45.3% highlight ratio, approaching human visual capability.
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OTAT achieves motion analysis accuracy over 99.4% for both direction and speed detection.
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OTAT uses a gate-adjacent semiconductor–insulator heterojunction as a photosensitive percolation channel enabling fine-tuned photoadaptation across six orders of illumination magnitude.

Organic tri-bulk-heterojunctioned adaptation phototransistor (OTAT) used as an in-sensor motion vision device

Integrated in-sensor moving-object extraction and motion analysis capabilities, including photoadaptation across six orders of illumination magnitude, moving-object highlight ratio, direction and speed detection accuracy, and impact on autonomous route-planning risk

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2026-06-29
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Daoben Zhu
Liu Z
Chong‐an Di
Ye Zou
Chengyu Zhang
Zepang Zhan
Weijie Wang
Weichen Bai
Wei Wang
Yutao Ge
Yunjiang Zi
Liyao Liu
Xiaojuan Dai
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