Area of research
Electrical and Electronic Engineering · Polymers and Plastics
Research interest
Research focused on Neuromorphic engineering and Memristor, with related work in Ferroelectricity, Synapse, Miniaturization. Notable publications include 'Graphene and its derivatives: switching ON and OFF', 'Polymer memristor for information storage and neuromorphic applications', and 'Light-Gated Memristor with Integrated Logic and Memory Functions'.
Wavelength‐Selective Photodetector and Neuromorphic Visual Sensor Utilizing Intrinsic Defect Semiconductor
An ultrasmall organic synapse for neuromorphic computing
An Ultrahigh‐Contrast Violet Phosphorus Van der Waals Phototransistor
Fully‐Printed Bionic Tactile E‐Skin with Coupling Enhancement Effect to Recognize Object Assisted by Machine Learning
High‐Performance Neuromorphic Computing Based on Ferroelectric Synapses with Excellent Conductance Linearity and Symmetry
Metal–Organic Frameworks–Based Memristors: Materials, Devices, and Applications
Layer-dependent ferroelectricity in 2H-stacked few-layer α-In<sub>2</sub>Se<sub>3</sub>
Implementation of All 27 Possible Univariate Ternary Logics With a Single ZnO Memristor
Light-Gated Memristor with Integrated Logic and Memory Functions
A 1D Vanadium Dioxide Nanochannel Constructed via Electric‐Field‐Induced Ion Transport and its Superior Metal–Insulator Transition
An Optoelectronic Resistive Switching Memory with Integrated Demodulating and Arithmetic Functions
Polymer memristor for information storage and neuromorphic applications
A Resistance-Switchable and Ferroelectric Metal–Organic Framework
Thermally-stable resistive switching with a large ON/OFF ratio achieved in poly(triphenylamine)
In Situ Synthesis and Nonvolatile Rewritable‐Memory Effect of Polyaniline‐Functionalized Graphene Oxide
Role of oxadiazole moiety in different D–A polyazothines and related resistive switching properties
Graphene and its derivatives: switching ON and OFF