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Here, a free-standing NiCo2S4 nanoparticles decorated carbon nanofibers (NiCo2S4-CNFs) interlayer is prepared via electrospinning and simple hydrothermal method for the application in Li-S batteries.
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In this work, we successfully prepared NiCo2S4 nanoparticles decorated reduced graphene oxide through a facile method.
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NiCo2S4 nanoparticles (NPs) were dry coated on LiNi0.
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Herein, for the first time, we develop a simple electrospinning technique to synthesize the one-dimensional (1D) electrospun carbon nanofibers functionalized with ternary NiCo2S4 nanoparticles (denoted as CNF@NiCo2S4) as a lightweight, flexible and binder-free electrode for aqueous Ni-Zn batteries.
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In this work, the electrocatalysts based on N and S co-doped carbon nanofibers with embedded candle soot and designed surface decoration of NiCo and NiCo2S4 nanoparticles (NiCo/NiCo2S4@CNS-800) were fabricated by electrospinning technology and subsequent pyrolysis processes.
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In this report, NiCo2S4 nanoparticles (NPs) are successfully synthesized by a simple cost effective one step hydrothermal method using dissimilar sulfur sources (thiourea- NTU, thioacetamide- NTA) separately.
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Here, a free-standing NiCo2S4 nanoparticles decorated carbon nanofibers (NiCo2S4-CNFs) interlayer is prepared via electrospinning and simple hydrothermal method for the application in Li-S batteries.
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Furthermore, NiCo2S4 nanoparticles were deposited on the surface of T-MCS to form a surface heterojunction.
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By employing a carbon nanotube (CNT) sponge with a 3D porous network as a compressible substrate and NiCo2S4 nanoparticles as active materials, a NiCo2S4/CNT sponge electrode with high compression.
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The stacked NiCo2S4 nanoparticles of the NC/NiCo2S4-6 electrode material exhibit a network-like structure to a certain extent.
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Dispersed NiCo2S4 nanoparticles of dozens of nanometers in diameter are anchored onto the PC surface to yield PCs/NiCo2S4 composites.
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In this work, we successfully prepared NiCo2S4 nanoparticles decorated reduced graphene oxide through a facile method.
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To solve the inevitable aggregation and the low cycling stability of NiCo2S4 electrode materials, herein NiCo2S4 nanoparticles anchoring onto polypyrrole nanotubes were synthesized by a hydrothermal method.
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In this work, NiCo2S4 nanoparticles for supercapacitors are successfully synthesized with a top-down strategy, using a novel dealloying method with an ion exchange reaction.
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In the NiCo2S4@graphene sheets nanohybrids, graphene sheets with abundant mesoporous network structure can be served as a conductive matrix and also be a protective buffer layer to suppress the volume expansion of NiCo2S4 nanoparticles.
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A facial solvothermal method is used to synthesize NiCo2S4 nanoparticles on carbon cloth (CC) to investigate the synergistic effect of transition metal sulfide and carbon substrates on the electrochemical performance in supercapacitors.
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A NiCo2S4 nanoparticles composite, in-situ grown on rice husk hierarchical porous carbon, is synthesized through a facile one-step hydrothermal method for energy storage.
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NiS2 and NiCo2S4 nanoparticles formed at high temperature are homogeneously dispersed in porous carbon and can activate its electrocatalytic performance.
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In this paper, seasame-ball-like core–shell hollow mesoporous carbon spheres decorated by NiCo2S4 nanoparticles (NiCo2S4/HMCSs) were prepared via a hydrothermal method.
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In this study, facial solvothermal method is applied to prepare NiCo2S4 nanoparticles and nanosheets immobilized on graphene aerogel (NiCo2S4/GA).
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