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Because winter sensible heat fluxes were largely negative, reductions in winter shortwave radiation resulted in an increase in annual average sensible heat.
However, it increases across the cool to warm transition, indicating some potential stress across the cool to warm transition with negative reductions.
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The reduction potential for hydrogen is taken by convention to be zero, and all metals with negative reduction potentials i.e., metals that are less easily reduced (more easily oxidized; e.g., zinc: Zn2+ + 2e− → Zn, − 0.763 volt)—can, in principle, displace hydrogen from a strong acid solution: Zn + 2H+ → Zn2+ + H2.
We observed that the CV curves did not have negative reduction potentials in Fig. 3a.
Ortho compounds exhibit more negative reduction potentials compared to the other isomers, in the same chemical class.
QCs have very high negative reduction potential in comparison to bulk, and this makes them useful for the catalysis of electron transfer reactions.
The more negative reduction potential of the conduction band of solid solutions would allow for more efficient hydrogen generation than CdS.
Under a negative reduction potential, graphene oxide nanosheets lose oxygen-containing functional group to become GNS, simultaneously MnO2 derived from KMnO4 is also electrochemically deposited on the electrode.
Besides, Liu et al. [26] stated that due to the bigger negative reduction potential of MnO, no reduction band assignable to the ({text{MnO}} to {text{Mn}}^{0}) process was observed even up to 750 °C.
Transition-metal sulphides, in particular ZnS [18, 19], have unique catalytic functions as a result of the rapid generation of electron-hole pairs by photo-excitation and the highly negative reduction potentials of excited electrons.
Noteworthy is that aryl chlorides, which have more negative reduction potential than aryl bromides and iodides, exhibited high reactivity in the reaction, and the corresponding five-membered and six-membered cyclized products were obtained in good to high yields.
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