2015
DOI: 10.1016/j.electacta.2015.04.049
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3D sponge-like nanoporous carbons via a facile synthesis for high-performance supercapacitors: direct carbonization of tartrate salt

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Cited by 47 publications
(14 citation statements)
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“…5d) at a current density of 100 A g -1 , PCAs2, PCAs1 and PCAs0.5 samples have capacitance retention 11 ratios of 98.4%, 97.1% and 95.9%, respectively, demonstrating excellent cycling stability. Overall, the electrochemical performance of the PCAs in aqueous electrolyte is comparable to other reported porous carbon materials [48][49][50][51].…”
Section: Electrochemical Performance In Aqueous Electrolytesupporting
confidence: 75%
“…5d) at a current density of 100 A g -1 , PCAs2, PCAs1 and PCAs0.5 samples have capacitance retention 11 ratios of 98.4%, 97.1% and 95.9%, respectively, demonstrating excellent cycling stability. Overall, the electrochemical performance of the PCAs in aqueous electrolyte is comparable to other reported porous carbon materials [48][49][50][51].…”
Section: Electrochemical Performance In Aqueous Electrolytesupporting
confidence: 75%
“…Luo et al synthesized 3D sponge-like nanoporous carbon via direct carbonization of tartrate salt in inert atmosphere without any activation. [138] A high specific surface area of 1018 m 2 g −1 could be achieved by the 3D spongelike nanoporous carbon. The electrode could deliver a high specific capacitance of 296 F g −1 at current density of 0.7 A g −1 .…”
Section: Wwwadvsustainsyscommentioning
confidence: 99%
“…Some biomass rich in organic salts such as citrates including K, Na, Ca, and so on, can also self‐activate to produce satisfactory porous structure, which not only further reduces the production cost, simplifies the preparation steps, but also is environmental friendly, providing new ideas for biomass selection. Figure shows a possible mechanism of self‐activation process of biomass, in which inorganic salts acted as templating agents, forming hierarchical porous structure . For example, nanostructured carbon was prepared using seaweed without any further activation, exhibiting the specific capacitance of 264 F/g as SCs electrodes on account of the moderate SSA and a rich oxygenated surface functionality .…”
Section: Biomass‐based Carbon For Electrode Materialsmentioning
confidence: 99%
“…Illustration of the synthesis procedures for obtaining porous carbon by activation and carbonization of organic salts. Reprinted with permission from Elsevier [Colour figure can be viewed at wileyonlinelibrary.com]…”
Section: Biomass‐based Carbon For Electrode Materialsmentioning
confidence: 99%
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