Projects
Biodegradable Ionic Liquids
Quantum Dot Solar Cells
Solutions for residential use
Forensic DNA Analysis using Real-time PCR
Genetic Disease Detection using PCR
AI-Based Traffic Management System
Solid-State Electrolytes for Safer Batteries
CardioScan
Highly secure data
Smart Waste Management System Using IoT
Industrial Machinery
EchoView
Predictive Maintenance for Industrial Equipment
Electrospun Nanofiber Membranes update
Metal–Organic Frameworks for Gas Storage - Update
Photocatalytic Water Splitting Material
TaskTracker
Nanoparticle-Based Drug Delivery System
Self-Healing Polymer Material
High-Capacity Solid-State Electrolyte
Solid-State Electrolyte for Next-Generation Batteries
Environmental Impact Assessment Tool
Environmental Protection, Sustainability, Informed Decision-Making. A data-driven tool for assessing environmental impacts of development projects
Advanced Spectroscopy for Planetary Analysis
Development of a novel spectroscopy technique for analyzing planetary compositions. Planetary exploration, astrobiology, space mission planning
Plant-based Bioplastics for Sustainable Packaging
A project that uses plant-based bioplastics to develop sustainable packaging solutions.
Plant-based bioplastics, sustainable packaging, eco-friendly packaging, environmental sustainability
Sustainable Chemistry for Environmental Remediation
Development of sustainable chemistry solutions for environmental cleanup.
Environmental remediation, sustainable chemistry, pollution control
Growing Up: The Future of Farming
Vertical farming is a method of growing plants in vertically stacked layers, often in an indoor environment.
Vertical farming can be used to increase food production in urban areas, reduce transportation costs, and provide fresh produce to local communities.
Advanced Optics for Laser Applications
A project that develops advanced optics for laser applications such as beam delivery and manipulation.
Laser applications, beam delivery, optics, photonics
Breaking Down: The Future of Plastics
Biodegradable plastics are made from organic materials that can break down naturally in the environment.
Biodegradable plastics can be used to reduce plastic waste, minimize environmental impact, and provide sustainable alternatives to traditional plastics.