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Mechanical, thermal and electrical properties of LiFePO^sub 4^/MWCNTs composite electrodes
Lithium iron phosphate (LiFePO4)/multi-walled carbon nanotubes (MWCNT) composite electrodes were prepared via a wet-filtration-zipping technique. Mechanical, thermal and electrical properties of the composite electrodes at various temperatures were studied. The composite electrodes exhibited electri...
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Published in: | Materials letters 2018-11, Vol.230, p.57 |
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creator | Kanagaraj, Amarsingh Bhabu Chaturvedi, Prerna Alkindi, Tawaddod Saif Susantyoko, Rahmat Agung An, Boo Hyun Patole, Shashikant P Shanmugam, Kumar AlMheiri, Saif AlDahmani, Sultan AlFadaq, Hamed Choi, Daniel S |
description | Lithium iron phosphate (LiFePO4)/multi-walled carbon nanotubes (MWCNT) composite electrodes were prepared via a wet-filtration-zipping technique. Mechanical, thermal and electrical properties of the composite electrodes at various temperatures were studied. The composite electrodes exhibited electrical conductivity in the range of 1.1 × 101–3.56 × 101 S/cm. Further, the thermal conductivity, effusivity and volumetric heat capacity were measured. Cyclic voltammograms confirmed good electrochemical performances and high stability during Li+ ion intercalation/de-intercalation. |
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Mechanical, thermal and electrical properties of the composite electrodes at various temperatures were studied. The composite electrodes exhibited electrical conductivity in the range of 1.1 × 101–3.56 × 101 S/cm. Further, the thermal conductivity, effusivity and volumetric heat capacity were measured. 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Mechanical, thermal and electrical properties of the composite electrodes at various temperatures were studied. The composite electrodes exhibited electrical conductivity in the range of 1.1 × 101–3.56 × 101 S/cm. Further, the thermal conductivity, effusivity and volumetric heat capacity were measured. Cyclic voltammograms confirmed good electrochemical performances and high stability during Li+ ion intercalation/de-intercalation.</abstract><cop>Amsterdam</cop><pub>Elsevier BV</pub></addata></record> |
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subjects | Carbon Conductivity Electrical properties Electrical resistivity Electrodes Intercalation Lithium ions Materials science Mechanical properties Multi wall carbon nanotubes Nanotubes Thermal conductivity Thermal cycling |
title | Mechanical, thermal and electrical properties of LiFePO^sub 4^/MWCNTs composite electrodes |
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