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Artículo

Versatile surface chemistry of Carbon based Nanoplatforms by covalent bonding, non-covalent linking, crosslinking, and self-assembling

Bracamonte, Angel GuillermoIcon
Fecha de publicación: 11/2023
Editorial: Lidsen Publishing Inc.
Revista: Recent Progress in Materials
e-ISSN: 2689-5846
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Química Orgánica

Resumen

This mini-review discussed the best-known chemical and synthetic methodologies used in the last years to modify carbon allotropes, with an interest in nanotechnology. In this perspective, chemistry with optoelectronics applications and recent trends within bio-applications focusing mainly on graphene and its derivatives were considered. So, the mini-review intended to focus on methodologies to add functional groups with varied reactivities, polymer chemistry, and nanoscale control. These methodologies provide insight for further developments. In this manner, traditional methods using strong acid media to convert simple carbon bonds into carboxylic acid and aldehydes organic functional groups were shown and discussed. Hence, chemical modifications in a variety of solvents could be developed. Notably, many organic chemical reactions, such as bimolecular nucleophilic substitution (SN2), click chemistry, and photochemical reactions, showed essential insights in designing the carbon-based material modifications and the bottom-up method.
Palabras clave: Chemical surface control , Chemical modifications , Graphene , Carbon based Nanomaterials
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/226829
URL: https://www.lidsen.com/journals/rpm/rpm-05-04-034
Colecciones
Articulos(INFIQC)
Articulos de INST.DE INVESTIGACIONES EN FISICO- QUIMICA DE CORDOBA
Citación
Bracamonte, Angel Guillermo; Versatile surface chemistry of Carbon based Nanoplatforms by covalent bonding, non-covalent linking, crosslinking, and self-assembling; Lidsen Publishing Inc.; Recent Progress in Materials; 5; 1; 11-2023; 1-22
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