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Gas solubility was found to be 10 times higher in methanol compared to water.
Consequently the consumption of the reagents was faster in methanol compared to water.
The Pt/CCG hybrid shows better tolerance to CO for electro-oxidation of methanol compared to the Pt/MWCNT catalyst.
Reported data shows a variation ranging from 6 1 to even 30:1 [154]54], meaning a fivefold requirement of methanol compared to other reaction setups.
The results clearly show that PAniTNC1-modified GCE enhances electrocatalytic reduction (ORR activity) behaviour towards methanol under O2-saturated acidic methanol compared to that in pH 1.0 solution.
Meanwhile, our catalyst exhibited better long-term durability and higher tolerance to methanol compared to commercially used high-cost Pt/C catalyst.
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The Cobalt 2,3-pyrazinedicarboxylate derived material (700 °C) showed high methanol tolerance compared to Pt 20% (0.05 M methanol, 0.5 M H2SO4), and good ORR durability (after 3000 cycles between 0.25 1.15 V vs RHE, O2 saturated 0.5M H2SO4).
In this study a good antibacterial activities were recorded using methanol extract compared to other extracts.
Moreover, NC-6 also shows better long-term stability and resistance to methanol crossover compared to Pt/C.
Moreover, it also displayed much superior stability and tolerance to methanol as compared to Pt/C, further highlighting the merit of this facile synthesis approach.
They show extremely higher activity for methanol oxidation compared to Pt/C electrocatalyst for the same Pt loadings.
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