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When they are used as an anode material in LIBs and SIBs, the as-prepared NC@SnO2 hybrid material displayed excellent electrochemical properties.
The maximum cobalt sorption capacity of the synthetic MOFs was approximately 256 mg g−1, and the stable and porous Schiff base-derived material displayed excellent regenerated availability with at least five recycle applications.
An optimal sample of the NC@CoPx/PyCNTs-900 material displayed excellent electrocatalytic performance for ORR with onset and half-wave potentials of ∼0.92 V vs. RHE and 0.80 V vs. RHE in 0.1 M KOH, respectively, as well as a small Tafel slope of 85 mV/dec.
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Palm is a natural material displaying excellent thermal properties.
As a result, the core-shell materials displayed excellent cycle performance: 94.0% capacity retention after 100 cycles (2.0 4.5 V under 1C and 25 °C) especially at high temperature≈50 °C: 86.5% capacity retention.
The N-CQDs/BiPO4 materials displayed excellent reusability and stability and demonstrated the oxygen defects in N-CQDs could sustainable activate molecular oxygen for organic pollutant removal under UV irradiation.
Furthermore, Zr-SBA-15 materials display excellent stability in palm oil transesterification, being fully regenerated by calcination at 550 °C after at least eight consecutive reaction runs.
Even membrane materials displaying excellent separation performance would be useless if productivity is low.
Benefiting from the special porous structure, this material displays excellent rate capability of 92.8 mA h g −1 at high rate of 20 C.
This RuO2 material displays excellent catalysis towards oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) in Li O2 batteries, because of increased catalytic sites, improved Li+ ions and electrons transport, and existence of electrolyte-filled intersheet zones between RuO2 sheets that will supply electrolyte to compensate for the evaporation of electrolyte.
FTIR, UV-vis spectra, scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD) and photoluminescent spectra were characterized, and the results revealed that the hybrid material with nanosphere structure displayed excellent photophysical property.
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