Exploring how biocatalysis and enzyme engineering are transforming medicine, energy, and sustainable manufacturing to address global challenges.
Exploring how green chemistry principles are transforming pharmaceutical manufacturing to reduce waste and environmental impact while improving drug discovery.
Exploring the revolutionary field of non-aqueous biocatalysis in heterogeneous solvent systems and its potential for green chemistry applications.
Exploring how graph neural networks are revolutionizing catalyst design for environmental remediation, renewable energy, and sustainable chemistry.
Explore how polymers are transforming protein crystallization, enabling breakthroughs in structural biology and drug discovery.
Exploring the mathematics and technology behind enzyme kinetics for sustainable solutions in manufacturing and medicine.
Exploring biocatalytic process intensification for metabolite synthesis through enzyme cascades and continuous flow systems.
Explore how modern technologies like DNA sequencing, particle accelerators, and AI are transforming archaeology and rewriting ancient history.
Exploring green polymerization methods using renewable materials, advanced catalysis, and waste reduction techniques for sustainable plastic production
Discover how fungi are revolutionizing chemistry by producing optically pure phosphonates through sustainable biocatalysis.