Abstract Degradable organic neuromorphic transistors, emerging as a promising platform for sustainable electronics, address the evolving demands of future artificial intelligence technologies. By synergizing the computational efficiency of neuromorphic architectures with eco‐friendly attributes, these devices offer a dual advantage in computational performance and environmental sustainability. Current research on such transistors, while primarily at the laboratory scale, opens new avenues at the intersection of sustainable materials and neuromorphic computing. This review highlights recent advances in electronically controlled and optoelectronically co‐reconfigurable organic neuromorphic transistors in degradable electronics. Furthermore, leveraging established expertise in organic electronics, we critically examine key challenges, including material selection and device engineering, in this nascent field.
Deyang Ji (Sun,) studied this question.