Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Tetrathiafulvalene, Chemistry, Polymer, Materials science, Ligand (biochemistry), and Redox.
Mechanically Robust, Durable, and Multifunctional Hyper‐Crosslinked Elastomer Based on Metal–Organic‐Cluster Crosslinker: The Role of Topological Structure
Efficient Photothermal Energy Conversion Triggered by near-Infrared Light in a Dithiolene-Based Metal–Organic Framework
A Tetrathiafulvalene/Naphthalene Diimide-Containing Metal–Organic Framework with <i>fsc</i> Topology for Highly Efficient Near-Infrared Photothermal Conversion
Persistent Radical Tetrathiafulvalene‐Based 2D Metal‐Organic Frameworks and Their Application in Efficient Photothermal Conversion
A Metal–Organic Framework Based on a Nickel Bis(dithiolene) Connector: Synthesis, Crystal Structure, and Application as an Electrochemical Glucose Sensor
Enhanced dielectricity coupled to spin-crossover in a one-dimensional polymer iron(<scp>ii</scp>) incorporating tetrathiafulvalene
Redox Activities of Metal–Organic Frameworks Incorporating Rare-Earth Metal Chains and Tetrathiafulvalene Linkers
Photo‐ and Electronically Switchable Spin‐Crossover Iron(II) Metal–Organic Frameworks Based on a Tetrathiafulvalene Ligand
A highly stretchable autonomous self-healing elastomer
Functional coordination polymers based on redox-active tetrathiafulvalene and its derivatives
Crystal Structures, Magnetic Properties, and Electrochemical Properties of Coordination Polymers Based on the Tetra(4-pyridyl)-tetrathiafulvalene Ligand