Explores the properties and applications of carbon nanostructures, including graphene and carbon nanotubes, emphasizing their unique characteristics and diverse uses.
Reviews ultrafast carrier and spin dynamics in 2D semiconductors and their heterostructures, exploring unique optical responses and novel applications.
Covers the Fast Fourier Transform (FFT) algorithm and its applications in computational physics, including image processing, experimental techniques, filters, and analysis of microscopy images.
Explores the mechanical and thermal properties of materials like wood, brick, concrete, and glasses, including their resistance to thermal shock and types of glazing.
Explores the chemistry of silicon and carbon compounds, including conductivity differences, compound existence, carbon nanotubes history, and environmental impact of carbon dioxide.
Commemorates 50 years of CECAM and the Berni J. Alder CECAM Prize, covering milestones in computational methods, quantum mechanics, slip motion, and more.
Explores the engineering of intrinsic π-electron magnetism in carbon nanostructures, focusing on inducing magnetism in graphene and nanographenes through sublattice imbalance and topological frustration.