Structural Flexibility in Activated Carbon Materials Prepared under Harsh Activation Conditions
Although traditionally high-surface area carbon materials have been considered as rigid structures with a disordered three dimensional (3D) network of graphite microdomains associated with a limited electrical conductivity (highly depending on the porous structure and surface chemistry), here we sho...
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doaj-7c48d19345ae495cbec994071fe794c32020-11-25T02:10:50ZengMDPI AGMaterials1996-19442019-06-011212198810.3390/ma12121988ma12121988Structural Flexibility in Activated Carbon Materials Prepared under Harsh Activation ConditionsFabiano Gomes Ferreira de Paula0Ignacio Campello-Gómez1Paulo Fernando Ribeiro Ortega2Francisco Rodríguez-Reinoso3Manuel Martínez-Escandell4Joaquín Silvestre-Albero5Laboratorio de Materiales Avanzados, Departamento de Química Inorgánica-IUMA, Universidad de Alicante, Ctra. San Vicente-Alicante s/n, E-03690 San Vicente del Raspeig, SpainLaboratorio de Materiales Avanzados, Departamento de Química Inorgánica-IUMA, Universidad de Alicante, Ctra. San Vicente-Alicante s/n, E-03690 San Vicente del Raspeig, SpainDepartamento de Química, Centro Federal de Educaçao Tecnológica de Minas Gerais, Av. Amazonas 5253, Nova Suíça, Belo Horizonte 30421-169, BrazilLaboratorio de Materiales Avanzados, Departamento de Química Inorgánica-IUMA, Universidad de Alicante, Ctra. San Vicente-Alicante s/n, E-03690 San Vicente del Raspeig, SpainLaboratorio de Materiales Avanzados, Departamento de Química Inorgánica-IUMA, Universidad de Alicante, Ctra. San Vicente-Alicante s/n, E-03690 San Vicente del Raspeig, SpainLaboratorio de Materiales Avanzados, Departamento de Química Inorgánica-IUMA, Universidad de Alicante, Ctra. San Vicente-Alicante s/n, E-03690 San Vicente del Raspeig, SpainAlthough traditionally high-surface area carbon materials have been considered as rigid structures with a disordered three dimensional (3D) network of graphite microdomains associated with a limited electrical conductivity (highly depending on the porous structure and surface chemistry), here we show <i>for the first time</i> that this is not the case for activated carbon materials prepared using harsh activation conditions (e.g., KOH activation). In these specific samples a clear structural re-orientation can be observed upon adsorption of different organic molecules, the structural changes giving rise to important changes in the electrical resistivity of the material. Whereas short chain hydrocarbons and their derivatives give rise to an increased resistivity, the contrary occurs for longer-chain hydrocarbons and/or alcohols. The high sensitivity of these high-surface area carbon materials towards these organic molecules opens the gate towards their application for sensing devices.https://www.mdpi.com/1996-1944/12/12/1988activated carbonstructural flexibilitysensing selectivityhydrocarbon and alcohol adsorptionelectrical conductivity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Fabiano Gomes Ferreira de Paula Ignacio Campello-Gómez Paulo Fernando Ribeiro Ortega Francisco Rodríguez-Reinoso Manuel Martínez-Escandell Joaquín Silvestre-Albero |
spellingShingle |
Fabiano Gomes Ferreira de Paula Ignacio Campello-Gómez Paulo Fernando Ribeiro Ortega Francisco Rodríguez-Reinoso Manuel Martínez-Escandell Joaquín Silvestre-Albero Structural Flexibility in Activated Carbon Materials Prepared under Harsh Activation Conditions Materials activated carbon structural flexibility sensing selectivity hydrocarbon and alcohol adsorption electrical conductivity |
author_facet |
Fabiano Gomes Ferreira de Paula Ignacio Campello-Gómez Paulo Fernando Ribeiro Ortega Francisco Rodríguez-Reinoso Manuel Martínez-Escandell Joaquín Silvestre-Albero |
author_sort |
Fabiano Gomes Ferreira de Paula |
title |
Structural Flexibility in Activated Carbon Materials Prepared under Harsh Activation Conditions |
title_short |
Structural Flexibility in Activated Carbon Materials Prepared under Harsh Activation Conditions |
title_full |
Structural Flexibility in Activated Carbon Materials Prepared under Harsh Activation Conditions |
title_fullStr |
Structural Flexibility in Activated Carbon Materials Prepared under Harsh Activation Conditions |
title_full_unstemmed |
Structural Flexibility in Activated Carbon Materials Prepared under Harsh Activation Conditions |
title_sort |
structural flexibility in activated carbon materials prepared under harsh activation conditions |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2019-06-01 |
description |
Although traditionally high-surface area carbon materials have been considered as rigid structures with a disordered three dimensional (3D) network of graphite microdomains associated with a limited electrical conductivity (highly depending on the porous structure and surface chemistry), here we show <i>for the first time</i> that this is not the case for activated carbon materials prepared using harsh activation conditions (e.g., KOH activation). In these specific samples a clear structural re-orientation can be observed upon adsorption of different organic molecules, the structural changes giving rise to important changes in the electrical resistivity of the material. Whereas short chain hydrocarbons and their derivatives give rise to an increased resistivity, the contrary occurs for longer-chain hydrocarbons and/or alcohols. The high sensitivity of these high-surface area carbon materials towards these organic molecules opens the gate towards their application for sensing devices. |
topic |
activated carbon structural flexibility sensing selectivity hydrocarbon and alcohol adsorption electrical conductivity |
url |
https://www.mdpi.com/1996-1944/12/12/1988 |
work_keys_str_mv |
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