Area of research
Materials Chemistry · Astronomy and Astrophysics
Research interest
Research interests include Materials science, Composite material, Dielectric, Homogeneity (statistics), Electric field, and Augite.
Strain-Dependent Dielectric Properties of Liquid Metal Polymer Composites for Stretchable Electronics
Preventing partial discharge in liquid metal polymer composites under steep voltage pulses
A Raman Spectroscopic Study of Lightning‐Induced Glass Produced From Five Mineral Phases
CLEAN: Cryogenic Link for Electric Aircraft Propulsion
Homogeneity of liquid metal polymer composites: impact on mechanical, electrical, and sensing behavior
Magnetic Properties of Lightning‐Induced Glass Produced From Five Mineral Phases
Effects of Droplet Size and Dispersion Homogeneity on the Dielectric Integrity of Liquid Metal Polymer Composites
Insulating materials for realising carbon neutrality: Opportunities, remaining issues and challenges
Effect of Particle Geometry on Electric Field Distribution, Partial Discharge, and Dielectric Strength of Iron-Polymer Composites
Detection of Series Faults in High-Temperature Superconducting DC Power Cables Using Machine Learning
Effects of Graphene Nanoplatelets on the Lightning Strike Damage Response of Carbon Fiber Epoxy Composite Laminates
Experimental setup to evaluate creepage distance requirements for shipboard power systems
Versatile Paschen's model for the dielectric strength estimation of binary and ternary gas mixtures
A New Representation of Paschen's Law Suitable for Variable Temperature Power Applications
Gas-Insulated High Temperature Superconducting Coaxial Dipole for MVDC Power Systems
The influence of temperature on the dielectric strength of gaseous cryogens
The dielectric strength of dissociated cryogenic gas media
Evaluating the dielectric strength of helium-nitrogen gas mixtures by plasma parameter measurements
Effect of magnetic field on the dielectric strength of gaseous cooling media for superconducting applications
A versatile modeling technique for predicting dielectric strength improvements in gas mixtures for superconducting applications [Oct 17 2755-2764]]
The dielectric properties of gaseous cryogen mixtures of He, H2, Ne, and N2 in a temperature range of 50–80 K at pressures up to 2.0 MPa
A versatile modeling technique for predicting dielectric strength improvements in gas mixtures for superconducting applications
The critical electric field of gas mixtures over the extended range of cryogenic operating conditions
Langmuir probe plasma diagnostics to investigate the dielectric properties of cryogenic gas mixtures
Boltzmann Analysis of Cryogenic $\text{He}$ –$\text{H}_{\text{2}}$ Gas Mixtures as Dielectric Media for High-Temperature Superconducting Power Devices
A versatile model for estimating breakdown voltage and its application for cryogenic gas mixtures