Author:
Omar Yamila M.,Maragliano Carlo,Lai Chia-Yun,Lo Iacono Francesco,Bologna Nicolas,Shah Tushar,Al Ghaferi Amal,Chiesa Matteo
Abstract
ABSTRACTOne of the main areas of improvement in capacitive deionization technologies is the materials used for electrodes which have very specific requirements. In the present work, a wide range of material characterization techniques are employed to determine the suitability of a multiwall carbon nanostructure thin film as electrode material. The electrical, mechanical, surface and wetting characteristics are studied proving the membrane highly conductive (σ=7.25 103 S/m), having competitive electro-sorption capacity (11.7 F/g at 10 mV/s) and surface area (149 m2/g), strain rate dependent mechanical properties and hydrophobic wetting behavior.
Publisher
Springer Science and Business Media LLC
Cited by
4 articles.
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