2015
DOI: 10.1016/j.jaap.2015.05.015
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Synthesis and structural characterization of hybrid polymeric networks-derived-SiCxOy in the presence and absence of cobalt acetate

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Cited by 9 publications
(15 citation statements)
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“…This result was in accordance with the XPS elemental composition analysis data results shown in Table S2 (Supporting Information) with a carbon and nitrogen content of 56.51 wt % and 3.12 wt % in Co/SiOC and 61.74 wt % and 2.56 wt % in Ni/SiOC. The higher amount of graphitic carbon is possibly due to the catalytic activity of cobalt and nickel in promoting the growth of carbon structures …”
Section: Resultsmentioning
confidence: 99%
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“…This result was in accordance with the XPS elemental composition analysis data results shown in Table S2 (Supporting Information) with a carbon and nitrogen content of 56.51 wt % and 3.12 wt % in Co/SiOC and 61.74 wt % and 2.56 wt % in Ni/SiOC. The higher amount of graphitic carbon is possibly due to the catalytic activity of cobalt and nickel in promoting the growth of carbon structures …”
Section: Resultsmentioning
confidence: 99%
“…[12][13][14][15][16] Silicon-oxy-carbide (SiOC) structures synthesized from polysiloxane polymers suitably cross-linked and pyrolysed at elevated temperature are relevant PDC structure with unique two-phase structure such as (i) the amorphous phase where Si is tetrahedrally bonded with oxygen and carbon; (ii) disordered carbon phase holding excellent chemical, thermal and physical properties that can be employed as bifunctional catalyst. [13,[17][18][19][20] The addition of precursor for transition metal particles such as cobalt and nickel at the atomic level is crucial in enhancing the properties such as electrochemical activity and conductivity of the SiOC material. [12,13,15,17,19] These metals (Ni and Co) are widely utilized because of their low cost, abundance and promising properties with higher conductivity, electrochemical activity, and durability in alkaline medium.…”
Section: Introductionmentioning
confidence: 99%
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