4.4 Article

Mesoporous Carbon Design for Ionic Liquid-Based, Double-Layer Supercapacitors

期刊

FUEL CELLS
卷 10, 期 5, 页码 840-847

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/fuce.200900198

关键词

Capacitance; Impedance; Ionic Liquids; Mesoporous Carbons; Supercapacitors; Time Constant

资金

  1. European Commission [TST4-CT-2005-518307]

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The use of pyrrolidinium-based ionic liquids (ILs) in asymmetric electric double-layer capacitors (AEDLC) with positive and negative carbon electrodes of different weight is a powerful strategy for developing safe, high specific-energy supercapacitors operating at > 3.5 V. The preparation and characterisation of ordered (OTC) and disordered (DTC) template carbons, the latter obtained by a fast and low-cost method, are reported. The porosity and capacitance features of the template carbons are discussed in view of their application in IL-based AEDLCs and compared with the properties of aero/cryo/xerogel carbons and a commercial activated carbon. The performance of an N-butyl-N-methyl pyrrolidinium bis(trifluoromethanesulfonyl) imide-based AEDLC assembled with DTC carbon electrodes operating at 3.9 V featuring high specific energy of 47 Wh kg(-1) is then reported. The impact of porosity and surface chemistry of carbons on the electrode capacitive response in IL and on the performance of the IL-based AEDLC in terms of energy, power and weight distribution of module components is discussed. The effect of IL nature and carbon porosity on the time constant of the double-layer charging process was also investigated by voltammetric and impedance studies.

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