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This material shows high efficiency for water splitting under visible light irradiation.
As-prepared material shows high ORR catalytic activity with overwhelming four-electron reduction pathway, long-term durability and high methanol tolerance in alkaline media.
In addition, the supercapacitor using OMC-600 as the active material shows high specific capacitance and excellent cycle stability, which exhibits a specific capacitance of 52.8 F g−1 at the charge/discharge current density of 0.5 A g−1.
Nanocomposite electrode material shows high specific capacitance (251 F/g) in comparison to its constituents viz NiFe2O4 (127 F/g) and PEDOT (156 F/g) where morphology of the pore structure plays a significant role over the total surface area.
The Li3V2(PO4)3/CNTs material shows high reversible capacity (189.3 mAh g− 1 at 0.1 °C), good rate capability (165.7 mAh g− 1 at 5 °C) and long-term cycling performance (89.5% of capacity retention up to 300 cycles at 10 °C).
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This composite material shows highest capacitance value of 2017 F g−1 at 3 A g−1 compared to NiCo2S4, and excellent cyclic stability retaining 88% capacitance after 5000 cycles.
Incubation results indicate that older and more decomposed soil material shows higher C respiration rates per unit incubated C than younger and less decomposed samples with higher C content.
The corresponding nickel-molybdenum material shows higher corrosion rates, and some electrocatalytic activity towards the anodic oxidation of hydrogen, but with little detectable catalysis of the methanol oxidation reaction.
The new *BEA-Ti material showed high reactivity, despite its low content in TiO2 (∼10%).
All NiMo catalysts supported on ZrO2-modified SBA-15 material showed high activity in HDS of 4,6-DMDBT.
A new material showing high anticorrosion and self-healing efficiency for self-healing anticorrosion coatings has been demonstrated.
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