Covalently Interconnected Three- Dimensional Graphene Oxide Solids


Autoria(s): Anantharaman, M R; Parambath, Sudeep M; Narayanan, T N; Aswathi, Ganesan; Shaijumon, M M; Hyunseung, Yang; Sehmus, Ozden; Prabir, Patra K; Matteo, Pasquali; Robert, Vajtai; Sabyasachi, Ganguli; Ajith, Roy K; Ajayan, M M
Data(s)

01/08/2014

01/08/2014

11/07/2013

Resumo

The creation of three-dimensionally engineered nanoporous architectures via covalently interconnected nanoscale building blocks remains one of the fundamental challenges in nanotechnology. Here we report the synthesis of ordered, stacked macroscopic three-dimensional (3D) solid scaffolds of graphene oxide (GO) fabricated via chemical cross-linking of two-dimensional GO building blocks. The resulting 3D GO network solids form highly porous interconnected structures, and the controlled reduction of these structures leads to formation of 3D conductive graphene scaffolds. These 3D architectures show promise for potential applications such as gas storage; CO2 gas adsorption measurements carried out under ambient conditions show high sorption capacity, demonstrating the possibility of creating new functional carbon solids starting with two-dimensional carbon layers

ACS nano,VOL 7,issue 8,pp 7034-7040

Cochin University of Science and Technology

Identificador

http://dyuthi.cusat.ac.in/purl/4385

Idioma(s)

en

Publicador

American Chemical Society

Palavras-Chave #graphene oxide #3D solids #CO2 adsorption #chemical cross-linking #reduced graphene oxide
Tipo

Article