Photoluminescence of sol-gel synthesized zno nanostructures

Erasto Vergara Hernández, Brenda Carolina Pérez Millán, Yael Valdemar Torres Torres, César Eduardo Cea Montufar

Producción científica: Capítulo del libro/informe/acta de congresoContribución a la conferenciarevisión exhaustiva

Resumen

Zinc oxide nanostructures have potentially interesting optical properties, which make them candidates for use in applications within the area of optoelectronics; their synthesis can be carried out through low-cost methods, such as sol gel, among many others. In addition, depending on the synthesis method, its shape and size, ZnO nanostructures can present emissions in the ultraviolet (UV) and visible region. By doping with elements such as carbon, silver, copper or some rare earth, for example, erbium, terbium or neodymium, the optical properties of ZnO can be adjusted and controlled to be able to be applied in the production of biosensors, photodetectors and even sensors of white light. In this research work, a review is presented on the nature of the optical transition mechanisms that occur in the ZnO nanostructures synthesized by the sol-gel method.

Idioma originalInglés
Título de la publicación alojadaAdvanced Material and Structures
EditoresMosbeh Kaloop, Seungho Hong
EditorialTrans Tech Publications Ltd
Páginas121-126
Número de páginas6
ISBN (versión impresa)9783035717952
DOI
EstadoPublicada - 2021
Evento3rd International Symposium on Material Science and Engineering, ISMSE 2020 and 4th International Conference on Advanced Material and Engineering Structural Technology, ICAMEST 2020 - Seoul, República de Corea
Duración: 11 sep. 202013 sep. 2020

Serie de la publicación

NombreKey Engineering Materials
Volumen885 KEM
ISSN (versión impresa)1013-9826
ISSN (versión digital)1662-9795

Conferencia

Conferencia3rd International Symposium on Material Science and Engineering, ISMSE 2020 and 4th International Conference on Advanced Material and Engineering Structural Technology, ICAMEST 2020
País/TerritorioRepública de Corea
CiudadSeoul
Período11/09/2013/09/20

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