Exploring the breakthrough solutions scientists are developing to overcome the voltage deficit in kesterite solar cells, the promising alternative to silicon photovoltaics.
Discover how helical polyacetylene@silica nanoparticles are transforming chiral separation in pharmaceuticals through their unique core/shell architecture.
Exploring how metal-oxo groups and dioxygen chemistry in Metal-Organic Frameworks enable breakthroughs in catalysis and gas separation technologies.
Explore how Mössbauer spectroscopy reveals atomic-scale magnetic and chemical properties of materials through nuclear resonance absorption.
Exploring hybrid 2D and 3D frameworks built with ϵ-Keggin polyoxometalates for revolutionary materials in clean energy and computing
Exploring the breakthrough technology of ECR-ALD deposited lanthanum hafnium oxide films for next-generation semiconductor applications.
Explore how supramolecular chemistry uses ruthenium complexes to create precision cancer-fighting nanomachines through programmed molecular organization.
Exploring Professor Ray Withers' pioneering work in solid state chemistry and how he decoded atomic disorder to revolutionize materials science.
Exploring the quantum mechanical effects of spin-orbit coupling in atomic clusters and their revolutionary applications in materials science and technology.
Exploring how Raman spectroscopy detects disordered carbon in ancient rocks and why it's not definitive proof of ancient life.