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It was shown that the first Li-extraction from nano-Li2MnO3 occurs at much lower potentials (by 180 360 mV) in comparison with micron-sized Li2MnO3 electrodes.
The adsorption of dopamine on these surfaces is very strong, taking place at much lower potentials than the electron transfer from solution species.
Phenazine has been observed to react with carbon dioxide in non-aqueous electrolyte via an ECE type mechanism at much lower potentials than aromatic hydrocarbons such as anthracene and olefins.
On the other hand, nitrate reduction takes place at much lower potentials (E <0.4 V), simultaneously yielding N2O and N2 but no NO, and terminated at prolonged polarization time.
The over voltage of EOR is considerably reduced by ∼260 mV with 33% of Au content in PdAu composition compared to Pd alone, demonstrating the beneficial role of Au and/or its surface oxides providing oxygen species at much lower potentials compared to Pd.
Compared to single Pt/C catalyst, the over potential of EOR is reduced by ca. 500 mV, at the onset during the reaction, for PtAu/C alloy with only 23% Pt content demonstrating the ability of Au and/or its surface oxides providing oxygen species at much lower potentials compared to Pt.
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"Bells," directed by Tina Landau, faces a much lower potential gross at the Plymouth because it has fewer seats.
A lower binding energy of C-M results in a lower conversion, but much lower potential of carbon formation.
Comparison of the recombinant HM with a mixture of three recombinant allergens, as well as natural allergens in the whole C. album pollen extract via immunological experiments revealed that it has a much lower potential of IgE reactivity.
The oxidation of AA and CAF at MWCNT occurred at ∼−10 mV and ∼1103 mV at a much lower potential, than that observed (∼202 mV and ∼1402 mV) for their oxidation at bare GCE.
This CuS MF modified electrode showed a wide linear range (upto 5.4 mM) with excellent sensitivity (1007 μA mM−1 cm−2) obtained at much lower potential (0.5 V), fast response time (<4s), good anti-interference ability and outstanding long term stability during nonenzymatic electrochemical sensing of glucose.
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