The significance of nanotechnology in Chemical Engineering lies in its capacity to create new opportunities for sustainable processes and molecular efficiency, establishing it as a crucial field. This course is crafted for final-year undergraduate and graduate-level (PG) students in Chemical Engineering, comprehensively exploring nanotechnology's applications in the chemical industry. The curriculum involves historical perspective, fundamental principles, and diverse nanotechnology applications. Students will learn and explore nanostructures, nanomaterials, properties of nanostructures, manufacturing techniques at the nanoscale, characterization methods, and the role of nanotechnology in catalysis. Additionally, the course will examine the practical applications of nanotechnology in energy, automobiles, environmental sustainability, and biofuel technology. The goal is to empower students with a profound understanding of nanotechnology's impact on chemical engineering processes and its potential to shape the industry's future. He has been teaching the courses CHN-425 Nanotechnology in Chemical Engineering, CHE-505 Advanced Reaction Engineering, CHN-505 Chemical Reactor Analysis, and CHN-427 Heterogeneous Catalysis and Reactor Design) since 2015.