Area of research
Ceramics and Composites · Mechanical Engineering
Research interest
Research interests include Materials science, Ceramic, Carbon nanotube, Self-healing hydrogels, Nanotechnology, and Flexural strength.
Optical grade (Gd <sub>0.95- <i>x</i> </sub>Lu <sub> <i>x</i> </sub>Eu <sub>0.05</sub>) <sub>3</sub>Al <sub>5</sub>O <sub>12</sub> ceramics with near-zero optical loss: Effects of Lu <sup>3+</sup> doping on structural feature, microstructure evolution, and far-red luminescence
Auto-programmed synthesis of metallic aerogels: Core-shell Cu@Fe@Ni aerogels for efficient oxygen evolution reaction
Transparent magneto-optical Ho2O3 ceramics: Role of self-reactive resultant oxyfluoride additive and investigation of vacuum sintering kinetics
Facile and green production of aqueous graphene dispersions for biomedical applications
Hybrid hydrogels containing vertically aligned carbon nanotubes with anisotropic electrical conductivity for muscle myofiber fabrication
Dielectrophoretically Aligned Carbon Nanotubes to Control Electrical and Mechanical Properties of Hydrogels to Fabricate Contractile Muscle Myofibers
Greatly enhanced Dy3+ emission via efficient energy transfer in gadolinium aluminate garnet (Gd3Al5O12) stabilized with Lu3+
Strong <scp> <scp>ZrB</scp> </scp> <sub>2</sub> – <scp> <scp>SiC</scp> </scp> – <scp> <scp>WC</scp> </scp> Ceramics at 1600°C
High-temperature bending strength, internal friction and stiffness of ZrB2–20vol% SiC ceramics