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This unpaired-paired spin change provides more active electron gas in the Fe2O3 XFe2O4 interface to enhance the average luminous intensities as 3.31~8.18 multiples than that of Fe2O3 Fe3O4 by the excitation of 488 nm, as presented in Fig. 3a.
Mitochondria with high membrane potential and a more active electron transport chain efficiently imported the JC-1 dye resulting in aggregation and red JC-1 fluorescence (delineated as region 4 R4) in the plots in Fig. 3A), whereas in less active mitochondria with lower membrane potential, the JC-1 remains in the monomeric, green-fluorescent conformation (region R3 in Fig. 3A).
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The results clearly reveal that the oxygen-terminated surface is more active for electron-transfer with this soluble redox protein than is the hydrogen-terminated surface.
The remarkable TMA sensing performance can be attributed to the cooperation of oxygen vacancies providing more active sites, rapid electron exchange between Fe3+ and Fe2+ cations inducing conductivity greatly change, and unique snowflake-like hierarchical structure possessing large contacting area and monocrystalline feature.
Under such anoxic conditions bacterial cells (facultative anaerobes) capable of using NO3 1−, SO4 2− and CO2 as terminal electron acceptor to decompose the organic matter (Steenberg et al. 1993) become more active causing a high electron transport system (ETS) activity in the sediments (Germ and Simčič, 2011).
The unique hierarchical heterostructure has a stable layered structure, more active sites and fast electron transport channels, which play an important role for improving the cycle stability and rate capacity performance.
Firstly, the two kinds of excellent pseudocapacitive materials densely cover on the entire surface of carbon fiber without using additives thus to provide more active spaces and improved electron transfer pathways.
It is ascribed to the presence of the CQDs as co-catalyst on the surface of KNbO3 particles, forming much more active sites for trapping electrons and promoting the separation of photo-generated electron-hole pairs.
Without an amine co-synergist, absolute quantum-yield measurements show that anthraquinones with electron-withdrawing groups are more active than those which are electron-donating.
The enhanced OER performance arises from that Co3O4 NPs uniformly anchored on sp2-hybridized carbon-nitrogen nanosheet array brings about more active sites, boosting mass transport and electron transfer.
As also previously observed, complexes of more electron-donating catechols and more electron-withdrawing ligands were more active.
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