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The mesoporous Fe Nx C materials demonstrated higher ORR catalytic activity compared to the NPMCs made by alternative methods.
The nanohybrid electrode materials demonstrated higher electrochemical performance (in terms of specific capacitance and rate capability as energy storage devices) compared to the pure Mn3O4.
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For methane catalytic combustion, these Pd/mesoporous materials demonstrate higher conversions and the Pd-SBA-15 sample prepared by ion exchange showed a light of temperature (T50 °C5 °C lower than the one exhibited by the sample prepared by incipient wetness impregnation.
More importantly, this novel material demonstrated higher thermal-stability in aqueous media than pure silica hybrid material.
Materials demonstrating high ion diffusivity are currently attracting a great deal of attention owing to their huge technological potential.
These materials demonstrate high concentration of polyphenolic compounds.
Without co-catalyst, this material demonstrated high, sustained activity and selectivity in propene metathesis.
The high-refractive-index material demonstrates higher confinement ability of light in comparison with lower one.
In contrast to the physical doped material (Hb), the strong covalent-bonded material (Ha) demonstrated higher thermal stability, photostability and well-dispersed spherical microstructure.
Both pristine and modified CNTs have been used in these cases where pristine CNTs have shown more intrinsic properties of the CNT materials and demonstrated high sensitivity but failed on selectivity [9].
When applied as an anode material in lithium ion batteries, graphene carbon nanotube hybrid materials demonstrated a high reversible lithium storage capacity, a high Coulombic efficiency and an excellent cyclability.
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CEO of Professional Science Editing for Scientists @ prosciediting.com