TY - JOUR
T1 - Robust Organic–Inorganic Heterosynapses with High PPF and Broad Photoperception
AU - Ban, Chaoyi
AU - Zhang, Zicheng
AU - Song, Cheng
AU - Zhang, Heshan
AU - Luo, Xu
AU - Wang, Xiaojing
AU - Liu, Juqing
AU - Liu, Zhengdong
AU - Huang, Wei
N1 - Publisher Copyright:
© 2022 Wiley-VCH GmbH.
PY - 2023/2/10
Y1 - 2023/2/10
N2 - Hybrid heterostructures are promising neurotransmitter platforms for photonic synapses in bioinspired optoelectronics. Organic–inorganic heterostructures have the features of a wide photoresponse and wet synthesis but still face poor stability and limited comprehensive performance. Here, it has been reported ultrastable and broadband photonic synaptic behaviors from solution-processed cross-linked conjugated polymer/zinc oxide nanorod heterostructures, which can be formed by in situ polymerization and hydrothermal methods. Light-tunable synaptic function enables neuromorphic behaviors, such as high paired-pulse facilitation, short- and long-term plasticity, over the UV-to-visible spectral range. Impressively, the heterosynapse can maintain clear synaptic plasticity after being annealed in ambient air at 300 °C, showing robust thermal stability in harsh conditions. Moreover, visual perception and recognition can be mimicked with our synapse arrays, providing a reliable pathway to construct stable neurotransmitters toward practical neuromorphic optoelectronics.
AB - Hybrid heterostructures are promising neurotransmitter platforms for photonic synapses in bioinspired optoelectronics. Organic–inorganic heterostructures have the features of a wide photoresponse and wet synthesis but still face poor stability and limited comprehensive performance. Here, it has been reported ultrastable and broadband photonic synaptic behaviors from solution-processed cross-linked conjugated polymer/zinc oxide nanorod heterostructures, which can be formed by in situ polymerization and hydrothermal methods. Light-tunable synaptic function enables neuromorphic behaviors, such as high paired-pulse facilitation, short- and long-term plasticity, over the UV-to-visible spectral range. Impressively, the heterosynapse can maintain clear synaptic plasticity after being annealed in ambient air at 300 °C, showing robust thermal stability in harsh conditions. Moreover, visual perception and recognition can be mimicked with our synapse arrays, providing a reliable pathway to construct stable neurotransmitters toward practical neuromorphic optoelectronics.
KW - broad photoperception
KW - high PPF
KW - hybrid heterostructures
KW - robust photonic synapses
UR - http://www.scopus.com/inward/record.url?scp=85139830629&partnerID=8YFLogxK
U2 - 10.1002/admt.202200870
DO - 10.1002/admt.202200870
M3 - 文章
AN - SCOPUS:85139830629
SN - 2365-709X
VL - 8
JO - Advanced Materials Technologies
JF - Advanced Materials Technologies
IS - 3
M1 - 2200870
ER -