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Wang, Ying-Ying; Rui, Xian-Hong; Hou, Bao-Hua; Ning, Qiu-Li; Pang, Wei-Lin; Liu, Mingkai; Wu, Xing-Long, E-mail: xhrui@gdut.edu.cn, E-mail: liumingkai@jsnu.edu.cn, E-mail: xinglong@nenu.edu.cn2019
AbstractAbstract
[en] An advanced hierarchically porous nanosheets-constructed three-dimensional (3D) carbon material (HPNSC) is prepared by using low-cost agricultural waste-nelumbium seed-pods as the precursor, and potassium hydroxide (KOH) as the activator. The as-prepared HPNSC material has a hierarchically porous nanosheets-constructed structure with 3D carbon nanosheet network morphology, which can enable fast and efficient transfer of Li+/Na+/H+ during charge–discharge process. The assembled HPNSC//HPNSC symmetric supercapacitors exhibit an improved energy density of 41.3 W h kg−1 with a power density of 180 W kg−1 in 1 mol l−1 Na2SO4 electrolyte. The energy density can still be maintained at 16.3 W h kg−1 even if the power density is increased to 9000 W kg−1. When acting as the reversible electrode for lithium ion batteries, this HPNSC material can achieve a high specific capacity of 1246 mA h g−1 at 0.1 A g−1. Moreover, sodium ion battery with HPNSC electrode exhibits excellent cycling performance of 161.8 mA h g−1 maintained even after being cycled 3350 times. The electrochemical performances clearly indicate that the HPNSC developed in this work is a very promising energy storage electrode material, and can further provide new insights for designing and developing highly porous materials for energy storage in other fields. (paper)
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Available from http://dx.doi.org/10.1088/1361-6528/ab043a; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Journal
Nanotechnology (Print); ISSN 0957-4484;
; v. 30(21); [10 p.]

Country of publication
AGRICULTURAL WASTES, ANODES, CAPACITIVE ENERGY STORAGE EQUIPMENT, CARBON, ELECTROCHEMISTRY, ELECTROLYTES, ENERGY DENSITY, ENERGY STORAGE, HYDROGEN IONS 1 PLUS, LITHIUM ION BATTERIES, MORPHOLOGY, NANOSTRUCTURES, PERFORMANCE, POROUS MATERIALS, POTASSIUM HYDROXIDES, POWER DENSITY, SHEETS, SODIUM IONS, SODIUM SULFATES, THREE-DIMENSIONAL LATTICES
ALKALI METAL COMPOUNDS, CATIONS, CHARGED PARTICLES, CHEMISTRY, CRYSTAL LATTICES, CRYSTAL STRUCTURE, ELECTRIC BATTERIES, ELECTROCHEMICAL CELLS, ELECTRODES, ELEMENTS, ENERGY STORAGE SYSTEMS, ENERGY SYSTEMS, EQUIPMENT, HYDROGEN COMPOUNDS, HYDROGEN IONS, HYDROXIDES, IONS, MATERIALS, NONMETALS, ORGANIC WASTES, OXYGEN COMPOUNDS, POTASSIUM COMPOUNDS, SODIUM COMPOUNDS, STORAGE, SULFATES, SULFUR COMPOUNDS, WASTES
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