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Antimicrobial activity is due to its affinity to instability between its oxidation states.
These results suggest that the antifungal activity is due to specific proteins, rather than metabolites.
The high activity is due to the concurrent reactions of RWGSR and ammonia synthesis.
This lower photocatalytic activity is due to its poor anatase crystallinity as shown in XRD results.
Their catalytic activity is due to the dissociation of molecular hydrogen into atomic state: H2 → 2H.
Its potent antibacterial activity is due to specific inhibition of bacterial RNA polymerase.
The excellent electrocatalytic activity is due to the unique structure of PtPd nanocataysts.
The enhanced electrocatalytic activity is due to the synergistic effect between RGO and NiFe2O4.
This strong antibacterial activity is due to the synergistic bactericidal Cu2+ and bacteriostatic Ni2+ ions released from CuNi bimetallic NPs.
However, it is still unclear if this increase in tumour activity is due to the spill-out from bladder or accumulation of tracer in hypoxic cells, or both.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com