| Literature DB >> 27441165 |
Lorie Trognko1, Pierre Lecante2, Nicolas Ratel-Ramond2, Patrick Rozier1, Barbara Daffos1, Pierre-Louis Taberna1, Patrice Simon1.
Abstract
Understanding ion adsorption in nanoporous carbon electrodes is of great importance for designing the next-generation of high energy density electrical double-layer capacitors. In this work, X-ray scattering is used for investigating the impregnation of nanoporous carbons with electrolytes in the absence of applied potential. We are able to show that interactions between the carbon surface and electrolytes allow adsorption to take place in sub-nanopores, thus confirming experimentally for the first time the results predicted by molecular dynamic simulations.Entities:
Keywords: Ion adsorption; Ionic liquids; Porous carbon; Supercapacitors; X-ray scattering
Year: 2015 PMID: 27441165 PMCID: PMC4933027 DOI: 10.1007/s40243-015-0059-4
Source DB: PubMed Journal: Mater Renew Sustain Energy ISSN: 2194-1459
Fig. 1SAXS (blue) and WAXS (red) experimental intensity vs scattering angle for a dried and b PC impregnated TiC-CDC
Parameters used in the excluded volume chain model
| Radius of gyration |
|
|
|---|---|---|
| 0.375 nm | 0.54 | 1.1 |
Fig. 2Experimental (blue) and calculated (red) SAXS intensity vs q (modulus of scattering vector) of dried TiC-CDC
Fig. 3X-ray scattering spectra of impregnated carbon (red) and dry carbon (black) a 0.66 nm pore size carbon, b 0.90 nm pore size carbon and c 1 M TEA, BF4 in PC (green)
Fig. 4X-ray scattering spectra of 0.66 nm pore size carbon a dry, b impregnated by PC and c after impregnation and evaporation
Fig. 5X-ray scattering spectra of dry carbons (black) and EMI, BF4 impregnated carbons (red) for a 0.66 nm pore size, b 0.90 nm pore size samples and of c EMI, BF4 ionic liquid (green)