Lee Hanna, Hwang Jun Ho, Song Seung Ho, Han Hyemi, Han Seo-Jung, Suh Bong Lim, Hur Kahyun, Kyhm Jihoon, Ahn Jongtae, Cho Jeong Ho, Hwang Do Kyung, Lee Eunji, Choi Changsoon, Lim Jung Ah
Center for Opto-Electronic Materials and Devices, Korea Institute of Science and Technology, Seoul, 02792, Republic of Korea.
Department of Chemical and Biomolecular Engineering, Yonsei University, Seoul, 03722, Republic of Korea.
Adv Sci (Weinh). 2023 Sep;10(27):e2304039. doi: 10.1002/advs.202304039. Epub 2023 Jul 27.
High-performance chiroptical synaptic phototransistors are successfully demonstrated using heterojunctions composed of a self-assembled nanohelix of a π-conjugated molecule and a metal oxide semiconductor. To impart strong chiroptical activity to the device, a diketopyrrolopyrrole-based π-conjugated molecule decorated with chiral glutamic acid is newly synthesized; this molecule is capable of supramolecular self-assembly through noncovalent intermolecular interactions. In particular, nanohelix formed by intertwinded fibers with strong and stable chiroptical activity in a solid-film state are obtained through hydrogen-bonding-driven, gelation-assisted self-assembly. Phototransistors based on interfacial charge transfer at the heterojunction from the chiroptical nanohelix to the metal oxide semiconductor show excellent chiroptical detection with a high photocurrent dissymmetry factor of 1.97 and a high photoresponsivity of 218 A W . The chiroptical phototransistor demonstrates photonic synapse-like, time-dependent photocurrent generation, along with persistent photoconductivity, which is attributed to the interfacial charge trapping. Through the advantage of synaptic functionality, a trained convolutional neural network successfully recognizes noise-reduced circularly polarized images of handwritten alphabetic characters with better than 89.7% accuracy.
利用由π共轭分子的自组装纳米螺旋和金属氧化物半导体制成的异质结,成功展示了高性能手性光学突触光电晶体管。为了赋予该器件强大的手性光学活性,新合成了一种用手性谷氨酸修饰的基于二酮吡咯并吡咯的π共轭分子;该分子能够通过非共价分子间相互作用进行超分子自组装。特别是,通过氢键驱动、凝胶辅助自组装获得了在固态膜状态下具有强且稳定手性光学活性的由缠绕纤维形成的纳米螺旋。基于从手性光学纳米螺旋到金属氧化物半导体的异质结处的界面电荷转移的光电晶体管表现出优异的手性光学检测性能,具有1.97的高光电流不对称因子和218 A W的高光电响应率。该手性光学光电晶体管展示出类似光子突触的、随时间变化的光电流产生以及持久光电导性,这归因于界面电荷俘获。借助突触功能的优势,一个经过训练的卷积神经网络成功识别出降噪后的手写字母字符的圆偏振图像, 准确率高于89.7%。