Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research focused on Nanotechnology and Photocatalysis, with related work in Energy transformation, Supercapacitor, Heterojunction. Notable publications include 'Complementary Weaknesses: A Win‐Win Approach for rGO/CdS to Improve the Energy Conversion Performance of Integrated Photorechargeable Li−S Batteries', 'Augmenting energy storage in photorechargeable supercapacitors via Ni2+/Ni3+ interconversion mechanism within TiO2/CdS/Ni2(OH)2CO3 composite photoelectrode', and 'Ionic imprinting polymer as a “suit of armor” to boost photostability of CdS in photocatalytic overall water splitting'.
Mechanistic insights of rGO/CdS-MoS2 heterostructure for a 23.1 % capacity boost in photo-rechargeable lithium-sulfur batteries
Complementary Weaknesses: A Win‐Win Approach for rGO/CdS to Improve the Energy Conversion Performance of Integrated Photorechargeable Li−S Batteries
Augmenting energy storage in photorechargeable supercapacitors via Ni2+/Ni3+ interconversion mechanism within TiO2/CdS/Ni2(OH)2CO3 composite photoelectrode
Ionic imprinting polymer as a “suit of armor” to boost photostability of CdS in photocatalytic overall water splitting
Complementary Weaknesses: A Win‐Win Approach for rGO/CdS to Improve the Energy Conversion Performance of Integrated Photorechargeable Li−S Batteries
Synergistic Photocatalytic CO<sub>2</sub> Reduction and Methanol Oxidation via Self-Photogenerated Oxygen Vacancy-Rich TiO<sub>2</sub> Nanostructures