At the Green and Advanced Materials Research (GAMER) Lab Group, we are dedicated to addressing local and global challenges through cutting-edge materials science and nanotechnology.
Our research focuses on the design, synthesis, and application of advanced materials using green and sustainable approaches, with a strong emphasis on scalability and real-world impact.
By integrating experimental research with computational modeling, we develop innovative materials that address critical issues such as pollutant removal, energy efficiency, and emissions reduction.
Through our multidisciplinary expertise and dedication to scientific excellence, we strive to deliver practical, eco-friendly solutions that drive technological progress and promote a cleaner, healthier, and more sustainable future.
We are dedicated to pioneering sustainable scientific and technological solutions by developing innovative materials and processes that tackle pressing global challenges in the environment, energy, and health sectors. Through cutting-edge research, we strive to drive impactful, eco-friendly advancements.
Our mission is to deliver practical, scalable solutions that benefit society, enhance public well-being, and promote a cleaner, healthier, and more sustainable future.
We aim to be a global leader in sustainable materials science and engineering, renowned for transforming groundbreaking fundamental research into practical, scalable solutions. We envision a future where our pioneering innovations in nanotechnology, computational modeling, and green energy drive the creation of cleaner environments, more efficient energy systems, and enhanced public health.
Through continuous scientific excellence and impactful collaboration, we aim to shape a more sustainable and resilient world.
⚙️ Multidisciplinary Collaboration: We integrate expertise in chemical engineering, materials science, theoretical chemistry, and computational modeling to develop advanced, scalable technologies.
🧪Innovative Material Design: Utilizing computational simulations (DFT, GCMC, and MD) and experimental validation, we design and optimize novel materials, including MOFs, nanoparticles, and bio-based adsorbents, for targeted environmental and energy applications.
🌿Sustainability and Impact: Our research focuses on creating eco-friendly and commercially viable technologies, such as bio-based coatings, energy storage solutions, and pollutant detection platforms, to support the transition to greener industries and enhance public well-being.
🔗 Translational Research: By bridging laboratory research with industrial applications, we aim to accelerate the large-scale implementation of our technologies, driving real-world impact and sustainable progress.
🌿 Sustainability and Environmental Responsibility: We are committed to developing eco-friendly technologies and sustainable materials that promote environmental preservation and resource efficiency.
💡 Scientific Excellence and Innovation: We strive for cutting-edge research and continuous innovation, pushing the boundaries of materials science and engineering to address global challenges.
🤝 Collaboration and Multidisciplinary Integration: We believe in the power of collaboration, combining expertise from chemical engineering, materials science, and computational modeling to deliver impactful solutions.
🌍 Real-World Impact and Applicability: Our research is driven by a focus on practical, scalable, and commercially viable solutions that address real-world problems and benefit society.
🔍 Integrity and Ethical Research: We uphold the highest standards of integrity, transparency, and ethical conduct in all our research activities.
📚 Continuous Learning and Adaptability: We foster a culture of lifelong learning, curiosity, and adaptability, embracing emerging technologies and scientific advancements.
❤️ Social Responsibility and Public Well-Being: We are dedicated to creating technologies that enhance public health, safety, and quality of life, contributing to a cleaner and healthier future.