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A new electrochemical interface of a chestnut-like hierarchical microsphere/SWCNT composite array was constructed.
A composite array that consists of graphene ribbons and silver nanowires are proposed on top of a glass substrate.
A composite array consisting of chemo-sensitive layers based on carbon nanotubes or carbon black dispersed in polymeric matrices and doped polythiophenes was used.
The enhancement of supercapacitor properties is due to the introduction Ni in the composite array, which improves the electric conductivity of the film electrode with fast reaction kinetics.
This transformation significantly affects the cementitious composite array, causing changes in the microstructure, chemical compounds and harmful consequences for physical properties, such as porosity/permeability and mechanical resistance.
Next, the TiO2-NRA@TiO2-QD structure was further bonded with organic molecules (N719) on its surfaces to form the TiO2-NRA@TiO2-QDs@N719 composithroughy theough the solvothermal method.
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Thin N-C shell is uniformly coated on the preformed NiO nanosheets forming composite arrays.
Integration of different functional materials into core/shell composite arrays is of great importance for high-performance energy storage.
Rational design/fabrication of metal oxide/metal composite arrays is critical for construction of advanced energy storage devices.
Directional design/preparation of porous metal/metal oxides composite arrays is critical for construction of advanced optical-electrochemical devices.
In the 1D CNT/fuel composite arrays, the chemical reaction propagated along the axis of the array of CNTs (Figure 4a).
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