Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Gas Sensing Nanomaterials and Sensors, Advanced Chemical Sensor Technologies, Analytical Chemistry and Sensors, and Advanced Photocatalysis Techniques.
Boosting Gaseous Acetone Detection by Nanoheterojunctions of p-Type MWCNTs/PANI Integrated into 3D Flame-Synthesized n-Type ZnO
Metal Oxide–Metal Organic Framework Layers for Discrimination of Multiple Gases Employing Machine Learning Algorithms
Balancing polysulfide containment and energy loss in lithium–sulfur batteries
Roadmap on printable electronic materials for next-generation sensors
From Plastic Waste to Green Hydrogen and Valuable Chemicals Using Sunlight and Water
Nanowire Array Breath Acetone Sensor for Diabetes Monitoring
Insights into Atomic Level π‐Electron Modulations in Supramolecular Carbon Nitride Nanoarchitectonics for Sustainable Green Hydrogen Production
Scalable nano-architecture for stable near-blackbody solar absorption at high temperatures
Advances in flame synthesis of nano-scale architectures for chemical, biomolecular, plasmonic, and light sensing
Understanding the Role of (W, Mo, Sb) Dopants in the Catalyst Evolution and Activity Enhancement of Co<sub>3</sub>O<sub>4</sub> during Water Electrolysis via In Situ Spectroelectrochemical Techniques
Oxygen Vacancies Engineering in Thick Semiconductor Films via Deep Ultraviolet Photoactivation for Selective and Sensitive Gas Sensing
Simultaneous electrochemical detection of glycated and human serum albumin for diabetes management
Alternatives to Water Photooxidation for Photoelectrochemical Solar Energy Conversion and Green H<sub>2</sub> Production
Surface Functionalization and Texturing of Optical Metasurfaces for Sensing Applications
A Self‐Powered Portable Nanowire Array Gas Sensor for Dynamic NO<sub>2</sub> Monitoring at Room Temperature
Highly efficient and durable solar thermal energy harvesting <i>via</i> scalable hierarchical coatings inspired by stony corals
Nanoscale TiO<sub>2</sub> Coatings Improve the Stability of an Earth-Abundant Cobalt Oxide Catalyst during Acidic Water Oxidation
Long-term thermal stability and failure mechanisms of Pyromark 2500 for high-temperature solar thermal receivers
Engineering the Activity and Stability of MOF‐Nanocomposites for Efficient Water Oxidation
An Outlook of Recent Advances in Chemiresistive Sensor-Based Electronic Nose Systems for Food Quality and Environmental Monitoring
Unconventional direct synthesis of Ni<sub>3</sub>N/Ni with N-vacancies for efficient and stable hydrogen evolution
Stable Acidic Water Oxidation with a Cobalt–Iron–Lead Oxide Catalyst Operating via a Cobalt‐Selective Self‐Healing Mechanism
Direct Observation of Oxygen Evolution and Surface Restructuring on Mn<sub>2</sub>O<sub>3</sub> Nanocatalysts Using <i>In</i> <i>Situ</i> and <i>Ex Situ</i> Transmission Electron Microscopy
Integrating Low‐Cost Earth‐Abundant Co‐Catalysts with Encapsulated Perovskite Solar Cells for Efficient and Stable Overall Solar Water Splitting
P-type Charge Transport and Selective Gas Sensing of All-Inorganic Perovskite Nanocrystals