Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Thermoelectric effect, Seebeck coefficient, Supercapacitor, Ionic liquid, and PEDOT:PSS.
A Solid Polymer Film with Giant Thermoelectric Properties by Polar Level Splitting with an Organic Donor
A Mixed Ion/Electron Thermoelectric Generator with Ultrahigh Steady Thermopower by Exploring Both the Hole Tunneling and Ion Accumulations
Great Enhancement in the Thermopower of Ionic Liquid by a Metal‐Organic Framework
Giant Thermoelectric Performance of N‐Type Ionogels by Synergistic Dopings of Cations and Anions
Flexible combinatorial ionic/electronic thermoelectric converters to efficiently harvest heat from both temperature gradient and temperature fluctuation
An ionic thermoelectric capacitor with continuous power generation for heat harvesting
Great Enhancement in the Seebeck Coefficient of PEDOT:PSS by Polaron Level Splitting via π–π Overlapping with Nonpolar Small Aromatic Molecules
Giant Thermoelectric Properties of Ionogels with Cationic Doping
Quasi-solid conductive gels with high thermoelectric properties and high mechanical stretchability consisting of a low cost and green deep eutectic solvent
PEDOT:PSS as Stretchable Conductors with Good Wettability on the Substrate through the Simultaneous Plasticization and Secondary Doping with a Cationic or Anionic Surfactant
Surface reconstruction, modification and functionalization of natural diatomites for miniaturization of shaped heterogeneous catalysts
Tuning parallel manganese dioxide to hollow parallel hydroxyl oxidize iron replicas for high-performance asymmetric supercapacitors
Ionic thermoelectrics: principles, materials and applications
A mixed ion-electron conducting carbon nanotube ionogel to efficiently harvest heat from both a temperature gradient and temperature fluctuation
Preparation of Porous Graphene@Mn<sub>3</sub>O<sub>4</sub> and Its Application in the Oxygen Reduction Reaction and Supercapacitor
Carbon cloth@T-Nb2O5@MnO2: A rational exploration of manganese oxide for high performance supercapacitor