Affiliation:
1. Key Laboratory of Organic Integrated Circuit Ministry of Education & Tianjin Key Laboratory of Molecular Optoelectronic Sciences Department of Chemistry School of Science Tianjin University Tianjin 300072 China
2. Collaborative Innovation Center of Chemical Science and Engineering (Tianjin) Tianjin 300072 China
3. Ji Hua Laboratory Foshan Guangdong 528200 China
Abstract
AbstractOrganic phototransistors (OPTs), as photosensitive organic field‐effect transistors (OFETs), have gained significant attention due to their pivotal roles in imaging, optical communication, and night vision. However, their performance is fundamentally limited by the Boltzmann distribution of charge carriers, which constrains the average subthreshold swing (SSave) to a minimum of 60 mV/decade at room temperature. In this study, an innovative one‐transistor‐one‐memristor (1T1R) architecture is proposed to overcome the Boltzmann limit in conventional OFETs. By replacing the source electrode in an OFET with a memristor, the 1T1R device exploits the memristor's sharp resistance state transitions to achieve an ultra‐low SSave of 18 mV/decade. Consequently, the 1T1R devices demonstrate remarkable sensitivity to photo illumination, with a high specific detectivity of 3.9 × 109 cm W−1Hz1/2, outperforming conventional OPTs (4.9 × 104 cm W−1Hz1/2) by more than four orders of magnitude. The 1T1R architecture presents a potentially universal solution for overcoming the detrimental effects of “Boltzmann tyranny,” setting the stage for the development of ultra‐low SSave devices in various optoelectronic applications.
Funder
National Natural Science Foundation of China
Fundamental Research Funds for the Central Universities