Large pore volume mesoporous copper particles and scaffold microporous carbon material obtained from an inorganic–organic nanohybrid material, copper …

MY Ghotbi, N Bagheri, SK Sadrnezhaad - Journal of colloid and interface …, 2011 - Elsevier
Journal of colloid and interface science, 2011Elsevier
Copper-succinate-layered hydroxide (CSLH), a new nanohybrid material, was synthesized
as an inorganic–organic nanohybrid, in which organic moiety was intercalated between the
layers of a single cation layered material, copper hydroxide nitrate. Microporous scaffold
carbon material was obtained by thermal decomposition of the nanohybrid at 500° C under
argon atmosphere followed by acid washing process. Furthermore, the heat-treated product
of the nanohybrid at 600° C was ultrafine mesoporous metallic copper particles. The results …
Copper-succinate-layered hydroxide (CSLH), a new nanohybrid material, was synthesized as an inorganic–organic nanohybrid, in which organic moiety was intercalated between the layers of a single cation layered material, copper hydroxide nitrate. Microporous scaffold carbon material was obtained by thermal decomposition of the nanohybrid at 500°C under argon atmosphere followed by acid washing process. Furthermore, the heat-treated product of the nanohybrid at 600°C was ultrafine mesoporous metallic copper particles. The results of this study confirmed the great potential of CSLH to produce the carbon material with large surface area (580m2/g) and high pore volume copper powder (2.04cm3/g).
Elsevier
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