Strong Polarons Enable High‐Performance Perovskite Optoelectronic Synaptic Diode Array for In‐Sensor Computing

ABSTRACT Halide perovskites, with their outstanding photovoltaic properties, are ideal materials for constructing optoelectronic synaptic diodes (OSDs) in in‐sensor computing. High recognition accuracy requires OSDs to generate a large number of photoresponsivity states and have a high light‐to‐dark current ratio ( I light / I dark ) for reliable signal discrimination. However, current perovskite OSDs that rely on ion migration and band‐offset barrier to localize carriers are limited by the number of photoresponsivity states (< 300) and I light / I dark (< 10 3 ). Here, we propose a novel mechanism that utilizes strong polarons in halide perovskites to simultaneously overcome these two limitations. We incorporate a strong polar organic amine, 3,5‐diaminobenzoic acid (mDAC), into MAPbI 3 to form an mDACPbI 4 /MAPbI 3 heterostructure as the active layer of OSDs. The large dipole moment of mDAC enhances the strength of polarons in the heterostructure, which can localize more carriers, thereby achieving 1329 accessible photoresponsivity states and 723 distinguishable photoresponsivity states. Moreover, mDAC suppresses ion migration, improving photovoltaic performance, which enables a high I light / I dark of 10 4 at 0 V. Both the I light / I dark and the number of photoresponsivity states are among the best reported performance of OSDs. Furthermore, we construct an 11 × 11 flexible crossbar array to demonstrate real time digit recognition, highlighting its potential for in‐sensor vision systems.

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Publication Details

Journal
Advanced Materials
Published
2026-09-13
DOI
https://doi.org/10.1002/adma.74894
Primary Topic
Perovskite Materials and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Strong Polarons Enable High‐Performance Perovskite Optoelectronic Synaptic Diode Array for In‐Sensor Computing

Jinmeng Tong, Wencai Ren, Nian Dai, Jiajun Xu et al.
Advanced Materials
Perovskite Materials and Applications
article

Strong Polarons Enable High‐Performance Perovskite Optoelectronic Synaptic Diode Array for In‐Sensor Computing

Jinmeng Tong, Wencai Ren, Nian Dai, Jiajun Xu, Lai‐Peng Ma, Yuanzhe Li, Zhibo Liu, Jinhong Du, Bo Tong, Keqiang Ji
article en

Abstract

ABSTRACT Halide perovskites, with their outstanding photovoltaic properties, are ideal materials for constructing optoelectronic synaptic diodes (OSDs) in in‐sensor computing. High recognition accuracy requires OSDs to generate a large number of photoresponsivity states and have a high light‐to‐dark current ratio ( I light / I dark ) for reliable signal discrimination. However, current perovskite OSDs that rely on ion migration and band‐offset barrier to localize carriers are limited by the number of photoresponsivity states (< 300) and I light / I dark (< 10 3 ). Here, we propose a novel mechanism that utilizes strong polarons in halide perovskites to simultaneously overcome these two limitations. We incorporate a strong polar organic amine, 3,5‐diaminobenzoic acid (mDAC), into MAPbI 3 to form an mDACPbI 4 /MAPbI 3 heterostructure as the active layer of OSDs. The large dipole moment of mDAC enhances the strength of polarons in the heterostructure, which can localize more carriers, thereby achieving 1329 accessible photoresponsivity states and 723 distinguishable photoresponsivity states. Moreover, mDAC suppresses ion migration, improving photovoltaic performance, which enables a high I light / I dark of 10 4 at 0 V. Both the I light / I dark and the number of photoresponsivity states are among the best reported performance of OSDs. Furthermore, we construct an 11 × 11 flexible crossbar array to demonstrate real time digit recognition, highlighting its potential for in‐sensor vision systems.

Advanced Materials
University of Science and Technology of China (CN), Chinese Academy of Sciences (CN)
National Natural Science Foundation of China, Natural Science Foundation of Liaoning Province, Basic and Applied Basic Research Foundation of Guangdong Province
Reduced inequalities
Openalex Percentile: Top 20%
Perovskite Materials and Applications
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