Efectos de la alta excitación electrónica en nanopartículas metálicas: pulsos láser ultracortos e iones pesados rápidos
Loading...
Download
Official URL
Full text at PDC
Publication date
2025
Defense date
25/11/2024
Authors
Advisors (or tutors)
Editors
Journal Title
Journal ISSN
Volume Title
Publisher
Universidad Complutense de Madrid
Citation
Abstract
Las nanopartículas metálicas poseen propiedades ópticas únicas que las hacen muy versátiles para una amplia gama de aplicaciones tecnológicas. Su capacidad de absorber eficientemente la radiación electromagnética, junto con la posibilidad de controlar dicho fenómeno mediante su tamaño, forma y composición, permite aprovechar su potencial en campos como la detección, la catálisis, la medicina y la energía. El continuo avance en la comprensión y el desarrollo de estas estructuras abre nuevas oportunidades para la innovación y el progreso en diversas áreas científicas y tecnológicas...
Metallic nanoparticles and plasmonic nanostructures possess unique optical properties that make them highly versatile for a wide range of technological applications. Their ability to efficiently absorb electromagnetic radiation, coupled with the possibility of controlling this phenomenon via their size, shape and composition, can be harnessed in fields such as sensing, catalysis, medicine, and energy. The continuous advancement in understanding and developing these structures opens new opportunities for innovation and progress in various scientific and technological areas...
Metallic nanoparticles and plasmonic nanostructures possess unique optical properties that make them highly versatile for a wide range of technological applications. Their ability to efficiently absorb electromagnetic radiation, coupled with the possibility of controlling this phenomenon via their size, shape and composition, can be harnessed in fields such as sensing, catalysis, medicine, and energy. The continuous advancement in understanding and developing these structures opens new opportunities for innovation and progress in various scientific and technological areas...
Description
Tesis inédita de la Universidad Complutense de Madrid, Facultad de Ciencias Químicas, leída el 25/11/2024