TY - JOUR
T1 - C─H Arylation-Derived Organic Conjugated Molecules for Optoelectronic Synaptic Transistors
AU - Chen, Yiyu
AU - Hu, Bin
AU - Wu, Jingpeng
AU - Zhao, Yi
AU - Liang, Zechen
AU - Bu, Laju
AU - Lu, Guanghao
N1 - Publisher Copyright:
© 2026 Wiley-VCH GmbH.
PY - 2026
Y1 - 2026
N2 - Photonic organic field-effect transistors (OFETs) mimicking biological neurons hold great promise for neuromorphic computing. However, current organic optoelectronic materials still suffer from limited functionality and the low atom economy of conventional synthesis methods (such as Suzuki and Stille couplings). Herein, two isomeric organic conjugated molecules, p-Ph2FTT and o-Ph2FTT, employing noncovalent conformational locks with excellent planarity are first developed via an eco-friendly, tin-free direct C─H activation strategy. Due to the different fluorine substitution positions on the benzene ring, the p-Ph2FTT molecule exhibits superior planarity compared with o-Ph2FTT, resulting in superior charge transport performance in OFETs. Employing p-Ph2FTT as a photosensitizer, the fabricated p-Ph2FTT/PDVT-10 synaptic transistor exhibits distinct synaptic responses under blue light stimulation, demonstrating excellent synaptic plasticity and a remarkable photosensitivity of 6.7 × 104. Furthermore, an artificial neural network constructed by this transistor achieves an overall recognition accuracy of 92.84% for handwritten digits. This investigation establishes a paradigm for the green synthesis of multifunctional molecular materials, facilitating the integration of eco-friendly chemistry and high-performance electronics for neuromorphic computing.
AB - Photonic organic field-effect transistors (OFETs) mimicking biological neurons hold great promise for neuromorphic computing. However, current organic optoelectronic materials still suffer from limited functionality and the low atom economy of conventional synthesis methods (such as Suzuki and Stille couplings). Herein, two isomeric organic conjugated molecules, p-Ph2FTT and o-Ph2FTT, employing noncovalent conformational locks with excellent planarity are first developed via an eco-friendly, tin-free direct C─H activation strategy. Due to the different fluorine substitution positions on the benzene ring, the p-Ph2FTT molecule exhibits superior planarity compared with o-Ph2FTT, resulting in superior charge transport performance in OFETs. Employing p-Ph2FTT as a photosensitizer, the fabricated p-Ph2FTT/PDVT-10 synaptic transistor exhibits distinct synaptic responses under blue light stimulation, demonstrating excellent synaptic plasticity and a remarkable photosensitivity of 6.7 × 104. Furthermore, an artificial neural network constructed by this transistor achieves an overall recognition accuracy of 92.84% for handwritten digits. This investigation establishes a paradigm for the green synthesis of multifunctional molecular materials, facilitating the integration of eco-friendly chemistry and high-performance electronics for neuromorphic computing.
KW - conjugated molecules
KW - C─H activation
KW - neuromorphic devices
KW - organic synaptic transistors
UR - https://www.scopus.com/pages/publications/105047050792
U2 - 10.1002/smll.75099
DO - 10.1002/smll.75099
M3 - 文章
AN - SCOPUS:105047050792
SN - 1613-6810
JO - Small
JF - Small
ER -