Chiroptical Synaptic Heterojunction Phototransistors Based on Self‐Assembled Nanohelix of π‐Conjugated Molecules for Direct Noise‐Reduced Detection of Circularly Polarized Light

Author:

Lee Hanna12,Hwang Jun Ho3,Song Seung Ho1,Han Hyemi1,Han Seo‐Jung45ORCID,Suh Bong Lim6,Hur Kahyun6ORCID,Kyhm Jihoon7ORCID,Ahn Jongtae1,Cho Jeong Ho2ORCID,Hwang Do Kyung189ORCID,Lee Eunji3ORCID,Choi Changsoon1ORCID,Lim Jung Ah19ORCID

Affiliation:

1. Center for Opto‐Electronic Materials and Devices Korea Institute of Science and Technology Seoul 02792 Republic of Korea

2. Department of Chemical and Biomolecular Engineering Yonsei University Seoul 03722 Republic of Korea

3. School of Materials Science and Engineering Gwangju Institute of Science and Technology Gwangju 61005 Republic of Korea

4. Chemical and Biological Integrative Research Center Korea Institute of Science and Technology Seoul 02792 Republic of Korea

5. Division of Bio‐Medical Science and Technology KIST School University of Science and Technology of Korea Seoul 02792 Republic of Korea

6. Extreme Materials Research Center Korea Institute of Science and Technology Seoul 02792 Republic of Korea

7. Technology Support Center Korea Institute of Science and Technology Seoul 02792 Republic of Korea

8. KU‐KIST Graduate School of Converging Science and Technology Korea University Seoul 02841 Republic of Korea

9. Division of Nano and Information Technology KIST School University of Science and Technology Seoul 02792 Republic of Korea

Abstract

AbstractHigh‐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−1. 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.

Funder

National Research Foundation of Korea

Korea Institute of Science and Technology

Air Force Office of Scientific Research

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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