Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Molecular Junctions and Nanostructures, Organic Electronics and Photovoltaics, Graphene research and applications, and Surface Chemistry and Catalysis.
Guidelines for accurate evaluation of photodetectors based on emerging semiconductor technologies
Rational Construction of Layered Two-Dimensional Conjugated Metal–Organic Frameworks with Room-Temperature Quantum Coherence
Tunable Charge Transport and Spin Dynamics in Two-Dimensional Conjugated Metal–Organic Frameworks
Li Promoting Long Afterglow Organic Light‐Emitting Transistor for Memory Optocoupler Module
How Biorecognition Affects the Electronic Properties of Reduced Graphene Oxide in Electrolyte‐Gated Transistor Immunosensors
MXenes: from past to future perspectives
Reduced Graphene Oxide Electrolyte‐Gated Transistor Immunosensor with Highly Selective Multiparametric Detection of Anti‐Drug Antibodies
Quasi‐1D Polymer Semiconductor–Diarylethene Blends: High Performance Optically Switchable Transistors
Enantiopure Dinaphtho[2,3‐<i>b</i>:2,3‐<i>f</i>]thieno[3,2‐<i>b</i>]thiophenes: Reaching High Magnetoresistance Effect in OFETs
A “Click” Reaction to Engineer MoS<sub>2</sub> Field-Effect Transistors with Low Contact Resistance
Selective Ion Sensing in Artificial Sweat Using Low‐Cost Reduced Graphene Oxide Liquid‐Gated Plastic Transistors
Dinaphthotetrathienoacenes: Synthesis, Characterization, and Applications in Organic Field‐Effect Transistors
Multiresponsive Nonvolatile Memories Based on Optically Switchable Ferroelectric Organic Field‐Effect Transistors
Universal Fabrication of Highly Efficient Plasmonic Thin‐Films for Label‐Free SERS Detection
Au(111) Surface Contamination in Ambient Conditions: Unravelling the Dynamics of the Work Function in Air
Ternary‐Responsive Field‐Effect Transistors and Multilevel Memories Based on Asymmetrically Functionalized Janus Few‐Layer WSe<sub>2</sub>
Nitrogen-Doped Carbon Dots/TiO<sub>2</sub> Nanoparticle Composites for Photoelectrochemical Water Oxidation
Engineering Optically Switchable Transistors with Improved Performance by Controlling Interactions of Diarylethenes in Polymer Matrices
Simultaneous Optical Tuning of Hole and Electron Transport in Ambipolar WSe<sub>2</sub> Interfaced with a Bicomponent Photochromic Layer: From High‐Mobility Transistors to Flexible Multilevel Memories
Photomodulation of Charge Transport in All‐Semiconducting 2D–1D van der Waals Heterostructures with Suppressed Persistent Photoconductivity Effect
Graphene transistors for real-time monitoring molecular self-assembly dynamics
X‐Ray‐Induced Growth Dynamics of Luminescent Silver Clusters in Zeolites
Optically switchable organic light-emitting transistors
Boosting and Balancing Electron and Hole Mobility in Single- and Bilayer WSe<sub>2</sub> Devices <i>via</i> Tailored Molecular Functionalization
Modulating the Charge Transport in 2D Semiconductors via Energy‐Level Phototuning
Phototuning Selectively Hole and Electron Transport in Optically Switchable Ambipolar Transistors
The Role of Morphology in Optically Switchable Transistors Based on a Photochromic Molecule/p‐Type Polymer Semiconductor Blend
Photomodulation of Two-Dimensional Self-Assembly of Azobenzene–Hexa-<i>peri</i>-hexabenzocoronene–Azobenzene Triads
Collective molecular switching in hybrid superlattices for light-modulated two-dimensional electronics
Publisher Correction: Collective molecular switching in hybrid superlattices for light-modulated two-dimensional electronics