<p>A novel core–shell structure hierarchical porous carbon-based material derived from starch, doped with oxygen and nitrogen, is described. The synthesis involves utilizing SiO<sub>2</sub> microspheres as templates to create a porous surface, H<sub>2</sub>SO<sub>4</sub> is employed as&#xa0;a&#xa0;dehydrating agent during the carbonization at 100&#xa0;°C for 6&#xa0;h to synthesis a high degree of graphitization carbon substrate (SSO-2:1). By employing dual cyanamide and cobalt compounds, a Co@C type of carbon nanotubes with nitrogen doped (Co@NCNTs) are&#xa0;grown on&#xa0;the surface of SSO-2:1 to&#xa0;establish a&#xa0;core–shell structure carbon composite (SSON) with hierarchical pores.&#xa0;The SSON has&#xa0;a specific surface area of 479.56 m<sup>2</sup>/g. In&#xa0;the electrolyte of&#xa0;3&#xa0;M KOH,&#xa0;the&#xa0;specific capacitance&#xa0;of SSON is measured at&#xa0;790 F/g,&#xa0;with a&#xa0;98.3% capacitance retention&#xa0;rate until 10,000 cycles. The&#xa0;numerous&#xa0;active sites on&#xa0;SSON&#xa0;promote&#xa0;the&#xa0;absorption&#xa0;of pseudocapacitance materials,&#xa0;such as cobalt and nickel layered double hydroxides (NiCo-LDH), resulting in the formation of NiCo-LDH@SSON. An asymmetrical solid state super capacitor is then fabricated using SSON as the negative electrode,&#xa0;NiCo-LDH@SSON as the positive electrode,&#xa0;PVA-KOH (3&#xa0;M) as the electrolyte, which delivered a specific capacitance&#xa0;of 194.4 F/g under the voltage window of 0&#xa0;V ~ 1.6&#xa0;V.&#xa0;Even after 30,000 charge / discharge cycles, the capacitance&#xa0;value remains at a retention rate&#xa0;of 88.3%,&#xa0;while the energy density can achieve to 71.09 Wh/kg&#xa0;under the high&#xa0;power density&#xa0;of 821.9 W/kg.</p>

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Preparation of a hierarchical porous carbon material derived from starch and its application in asymmetrical supercapacitors

  • Tingyao Du,
  • Xiaojie Liu,
  • Jianyu Guo,
  • Yan Lu

摘要

A novel core–shell structure hierarchical porous carbon-based material derived from starch, doped with oxygen and nitrogen, is described. The synthesis involves utilizing SiO2 microspheres as templates to create a porous surface, H2SO4 is employed as a dehydrating agent during the carbonization at 100 °C for 6 h to synthesis a high degree of graphitization carbon substrate (SSO-2:1). By employing dual cyanamide and cobalt compounds, a Co@C type of carbon nanotubes with nitrogen doped (Co@NCNTs) are grown on the surface of SSO-2:1 to establish a core–shell structure carbon composite (SSON) with hierarchical pores. The SSON has a specific surface area of 479.56 m2/g. In the electrolyte of 3 M KOH, the specific capacitance of SSON is measured at 790 F/g, with a 98.3% capacitance retention rate until 10,000 cycles. The numerous active sites on SSON promote the absorption of pseudocapacitance materials, such as cobalt and nickel layered double hydroxides (NiCo-LDH), resulting in the formation of NiCo-LDH@SSON. An asymmetrical solid state super capacitor is then fabricated using SSON as the negative electrode, NiCo-LDH@SSON as the positive electrode, PVA-KOH (3 M) as the electrolyte, which delivered a specific capacitance of 194.4 F/g under the voltage window of 0 V ~ 1.6 V. Even after 30,000 charge / discharge cycles, the capacitance value remains at a retention rate of 88.3%, while the energy density can achieve to 71.09 Wh/kg under the high power density of 821.9 W/kg.