Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Chemistry, Materials science, Nanotechnology, Rotaxane, Supramolecular chemistry, and Covalent bond.
Structural Insights into the Mechanical Behavior of Large-Area 2D Covalent Organic Framework Nanofilms
Carbon Nanotubes and Their Composites for Flexible Electrochemical Biosensors
Electrically Powered Dissipative Hydrogel Networks Reveal Transient Stiffness Properties for Out-of-Equilibrium Operations
Chemical and Photochemical-Driven Dissipative Fe<sup>3+</sup>/Fe<sup>2+</sup>-Ion Cross-Linked Carboxymethyl Cellulose Gels Operating Under Aerobic Conditions: Applications for Transient Controlled Release and Mechanical Actuation
The Interaction of Amines with Gold Nanoparticles
Cellulose Nanocrystal Composites with Enhanced Mechanical Properties for Robust Transparent Thin Films
Ultrathin organic membranes: Can they sustain the quest for mechanically robust device applications?
Nanozyme–Cellulose Hydrogel Composites Enabling Cascade Catalysis for the Colorimetric Detection of Glucose
Cellulose-Based Functional Materials for Sensing
Large freestanding 2D covalent organic framework nanofilms exhibiting high strength and stiffness
Insights into the Gelation Mechanism of Metal-Coordinated Hydrogels by Paramagnetic NMR Spectroscopy and Molecular Dynamics
Electrochemical Switching of a Fluorescent Molecular Rotor Embedded within a Bistable Rotaxane
Photo-Responsive Graphene and Carbon Nanotubes to Control and Tackle Biological Systems
Neighboring Component Effect in a Tri-stable [2]Rotaxane
Mixed-Valence Superstructure Assembled from a Mixed-Valence Host–Guest Complex
Surface plasmon resonance in gold nanoparticles: a review
Introducing Stable Radicals into Molecular Machines
Porous graphite oxide pillared with tetrapod-shaped molecules
Influence of Constitution and Charge on Radical Pairing Interactions in Tris-radical Tricationic Complexes
Quantum Mechanical and Experimental Validation that Cyclobis(paraquat‐<i>p</i>‐phenylene) Forms a 1:1 Inclusion Complex with Tetrathiafulvalene
An Electrochemically and Thermally Switchable Donor–Acceptor [<i>c</i>2]Daisy Chain Rotaxane
Sugar and pH dual-responsive mesoporous silica nanocontainers based on competitive binding mechanisms
Relative contractile motion of the rings in a switchable palindromic [3]rotaxane in aqueous solution driven by radical-pairing interactions
Stimulated Release of Size‐Selected Cargos in Succession from Mesoporous Silica Nanoparticles