Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Zinc, Thermoelectric effect, Genotoxicity, Graphene, and Thermoelectric materials.
Ultralow Thermal Conductivity Achieved by All Carbon Nanocomposites for Thermoelectric Applications
Ultralow Thermal Conductivity Achieved by All Carbon Nanocomposites for Thermoelectric Applications
Synthesis of <i>β</i>-Ga2O3 thin film assisted by microwave annealing
Few-layer graphene induces both primary and secondary genotoxicity in epithelial barrier models in vitro
Paper Thermoelectrics by a Solvent-Free Drawing Method of All Carbon-Based Materials
Efficient Microwave-Assisted Extraction of Nitrites from Cured Meat and Their Voltammetric Detection at Chemically Modified Electrodes Based on Hexamethyl-p-Terphenyl Poly(methylatedbenzimidazolium) Incorporating Nitrogen-Doped Graphite Nanoplatelets
Lightweight and Bulk Organic Thermoelectric Generators Employing Novel P-Type Few-Layered Graphene Nanoflakes
In Vitro Primary‐Indirect Genotoxicity in Bronchial Epithelial Cells Promoted by Industrially Relevant Few‐Layer Graphene
Few-Layer Graphene Induces Both Primary and Secondary Genotoxicity in in Vitro Alveolar Barrier Models
Voltammetric Detection of Caffeine in Beverages at Nafion/Graphite Nanoplatelets Layer-by-Layer Films
Quaternary phosphonium-based (TPQPCl)-ionomer/graphite nanoplatelets composite chemically modified electrodes: a novel platform for sensing applications
Microwave-assisted synthesis of layered basic zinc acetate nanosheets and their thermal decomposition into nanocrystalline ZnO
The effect of metal layers on the morphology and optical properties of hydrothermally grown zinc oxide nanowires
Nanocrystalline ZnO obtained from pyrolytic decomposition of layered basic zinc acetate: Comparison between conventional and microwave oven growth
Investigation into the initial growth parameters of hydrothermally grown zinc oxide nanowires
The viability of U-2 OS cells on Zinc Oxide nanowires observed via MTS assay in vitro