2019
DOI: 10.1002/cssc.201901766
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Porous Ultrathin NiSe Nanosheet Networks on Nickel Foam for High‐Performance Hybrid Supercapacitors

Abstract: Transition metal selenides (TMSs) with excellent electrochemical activity and high intrinsic electrical conductivity have attracted considerable attention owing to their potential use in energy storage devices. However, the low energy densities of the reported TMSs, which originate from the small active surface area and poor electrolyte ion mobility, substantially restrict their application potential. In this work, porous ultrathin nickel selenide nanosheet networks (NiSe NNs) on nickel foam are fabricated by … Show more

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Cited by 51 publications
(15 citation statements)
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“…15 However, till date, flawless HSCs have not been reported for large-scale application. Metal oxides (NiO), 16 T h i s c o n t e n t i s hydroxides (Co (OH) 2 ), 17 sulfides (NiS), 18 and selenides (NiSe) 19 have been investigated as HSCs. However, due to a limited number of redox reactions, they exhibit poorer electrochemical performance than bimetallic compounds.…”
Section: Introductionmentioning
confidence: 99%
“…15 However, till date, flawless HSCs have not been reported for large-scale application. Metal oxides (NiO), 16 T h i s c o n t e n t i s hydroxides (Co (OH) 2 ), 17 sulfides (NiS), 18 and selenides (NiSe) 19 have been investigated as HSCs. However, due to a limited number of redox reactions, they exhibit poorer electrochemical performance than bimetallic compounds.…”
Section: Introductionmentioning
confidence: 99%
“…Recently, the transition metal selenides have been regarded as the promising candidate with good conductivity and electrochemical activity [13]. Particularly, metal selenide shows superior electrochemical properties in consequence of material architecture enhancing the large surface area which provides and accelerates redox reaction [14].…”
Section: Introductionmentioning
confidence: 99%
“…When the crystal further transforms into hexagonal NiSe, the Ni d-band also passes through the Fermi level with increased energy in states, which is in accordance with previous literature contributions. 39,40 The d-band center and occupied electron numbers in Ni d-band and Se p-band are also calculated as shown in Table S5. The d-band center 41 is a reasonable descriptor to predict the catalytic activity of transition metals, which is a measure of the strength between metal and absorbate (i.e., hydrogen adsorption energy).…”
mentioning
confidence: 99%