2021
DOI: 10.1007/s13738-021-02257-1
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Preparation and electrochemical properties of MOF-derived nitrogen self-doped porous carbon

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Cited by 7 publications
(4 citation statements)
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“…The GCD curves at diverse current densities are plotted in Figure b, in which the discharge time is gradually shortened due to the electrode polarization as the current density rises. By the calculation according to eq , the specific capacitance of NCS-700 is determined to be 357, 229, 198, 176, 165, and 148 F g –1 at 0.5, 1, 2, 5, 10, and 20 A g –1 , respectively, which is close to or higher than those of similar published carbon materials shown in Table . ,, This indicates that the NCS-700 has a high energy-storage capacity and rate capability. Figure c demonstrates that the capacitance residual and Coulombic efficiency of the NCS-700 are 94.5% and 98.4% after 10 000 GCD cycles, respectively.…”
Section: Resultsmentioning
confidence: 57%
“…The GCD curves at diverse current densities are plotted in Figure b, in which the discharge time is gradually shortened due to the electrode polarization as the current density rises. By the calculation according to eq , the specific capacitance of NCS-700 is determined to be 357, 229, 198, 176, 165, and 148 F g –1 at 0.5, 1, 2, 5, 10, and 20 A g –1 , respectively, which is close to or higher than those of similar published carbon materials shown in Table . ,, This indicates that the NCS-700 has a high energy-storage capacity and rate capability. Figure c demonstrates that the capacitance residual and Coulombic efficiency of the NCS-700 are 94.5% and 98.4% after 10 000 GCD cycles, respectively.…”
Section: Resultsmentioning
confidence: 57%
“…Finally, the porous carbon ZMC-T was obtained after drying at 60˚C for 12 h, where C stands for porous carbon, and T stands for carbonization temperature. The charring temperature is determined by the thermogravimetric (TG) curve of sample ZM, the charring time and the heating rate were determined according our previous work [14] [15].…”
Section: Preparation Of Zm-derived Porous Carbon Zmc-tmentioning
confidence: 99%
“…Metal–organic frameworks (MOFs), constructed from metal nodes and organic bridging ligands. As an emerging family of multifunctional crystal materials, MOFs have received numerous attentions due to their properties of high porosity, large specific surface area, flexible and controllable structure, and simple synthesis method. , As far as electrochemical sensors are concerned, MOFs-derived carbon materials (MOFs-C) are frequently used to avoid the poor conductivity and low stability in aqueous solutions of the original MOFs. , During the thermal treatment, organic ligands served as precursors for porous carbon, while metal ions were in situ converted into metals or metal oxides and evenly distributed in the carbon matrix. Therefore, MOFs-C not only retain the inherent advantages of the large surface area and high porosity of the original MOFs but also combine the excellent conductivity of carbon materials with the abundant active metal loci. The synergy between the binary structures of MOFs-C is conducive to improving the electrocatalytic properties of the material for small molecules .…”
Section: Introductionmentioning
confidence: 99%
“…10,11 As far as electrochemical sensors are concerned, MOFs-derived carbon materials (MOFs-C) are frequently used to avoid the poor conductivity and low stability in aqueous solutions of the original MOFs. 12,13 During the thermal treatment, organic ligands served as precursors for porous carbon, while metal ions were in situ converted into metals or metal oxides and evenly distributed in the carbon matrix. Therefore, MOFs-C not only retain the inherent advantages of the large surface area and high porosity of the original MOFs but also combine the excellent conductivity of carbon materials with the abundant active metal loci.…”
Section: Introductionmentioning
confidence: 99%