Bio-based activated carbons with very high specific surface area of >3.000 m² g−1 (based on CO2 adsorption isotherms) and a high proportion of micropores (87% of total SSA) are produced by corncobs via pyrolysis and chemical activation with KOH. The activated carbon is further doped with different proportions of the highly pseudocapacitive transition metal oxide RuO2 to obtain enhanced electrochemical properties and tune the materials for the application in electrochemical double-layer capacitors (EDLC) (supercapacitors). The activated carbon and composites are extensively studied regarding their physico-chemical and electrochemical properties. The results show that the composite containing 40 wt.% RuO2 has an electric conductivity of 408 S...
[[abstract]]©2004 Elsevier - The high specific capacitance of ruthenium oxide (denoted as RuOx ) nan...
Carbon materials derived from biomass are promising electrode materials for supercapacitor applicati...
Corncob carbon prepared by means of (KOH) chemical activation method at 600 �C for 1 h is shown as a...
The relationship between the structure-specific capacitance (F g-1) of a composite electrode consist...
Hydrous ruthenium oxide (RuO2) and activated carbon (AC) denoted as RuO2/AC composite electrodes wer...
Hydrous ruthenium oxide (RuO2) and activated carbon (AC) denoted as RuO2/AC composite electrodes wer...
In this study, corncob-based activated carbons (ACs) were prepared by carbon dioxide (CO2) activatio...
In this work, African maize cobs (AMC) were used as a rich biomass precursor to synthesize carbon ma...
It is shown that composite Ru oxide-carbon based supercapacitors possess superior energy and power d...
It is shown that composite Ru oxide-carbon based supercapacitors possess superior energy and power d...
Ruthenium oxide–carbon composites with different loadings of RuO2 on carbon have been synthesized by...
Ruthenium oxide–carbon composites with different loadings of RuO2 on carbon have been synthesized by...
Ruthenium oxide–carbon composites with different loadings of RuO2 on carbon have been synthesized by...
Ruthenium oxide–carbon composites with different loadings of RuO2 on carbon have been synthesized by...
[[abstract]]©2004 Elsevier - The high specific capacitance of ruthenium oxide (denoted as RuOx ) nan...
[[abstract]]©2004 Elsevier - The high specific capacitance of ruthenium oxide (denoted as RuOx ) nan...
Carbon materials derived from biomass are promising electrode materials for supercapacitor applicati...
Corncob carbon prepared by means of (KOH) chemical activation method at 600 �C for 1 h is shown as a...
The relationship between the structure-specific capacitance (F g-1) of a composite electrode consist...
Hydrous ruthenium oxide (RuO2) and activated carbon (AC) denoted as RuO2/AC composite electrodes wer...
Hydrous ruthenium oxide (RuO2) and activated carbon (AC) denoted as RuO2/AC composite electrodes wer...
In this study, corncob-based activated carbons (ACs) were prepared by carbon dioxide (CO2) activatio...
In this work, African maize cobs (AMC) were used as a rich biomass precursor to synthesize carbon ma...
It is shown that composite Ru oxide-carbon based supercapacitors possess superior energy and power d...
It is shown that composite Ru oxide-carbon based supercapacitors possess superior energy and power d...
Ruthenium oxide–carbon composites with different loadings of RuO2 on carbon have been synthesized by...
Ruthenium oxide–carbon composites with different loadings of RuO2 on carbon have been synthesized by...
Ruthenium oxide–carbon composites with different loadings of RuO2 on carbon have been synthesized by...
Ruthenium oxide–carbon composites with different loadings of RuO2 on carbon have been synthesized by...
[[abstract]]©2004 Elsevier - The high specific capacitance of ruthenium oxide (denoted as RuOx ) nan...
[[abstract]]©2004 Elsevier - The high specific capacitance of ruthenium oxide (denoted as RuOx ) nan...
Carbon materials derived from biomass are promising electrode materials for supercapacitor applicati...
Corncob carbon prepared by means of (KOH) chemical activation method at 600 �C for 1 h is shown as a...