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The PRE, sterilised by either method, exhibited antimicrobial activity at each time point against the Gram positive organisms (S. aureus and B. subtilis) (Table 1).
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The catalysts prepared by DP method exhibited better conversions and good selectivities towards propanediols.
The hexagonal ZnO nanosheet films prepared by this method exhibited excellent PEC properties.
Compared with conventional ZSM-5 catalyst, mesoporous ZSM-5 single crystals synthesized by this method exhibited significantly higher external surface area and larger mesopore volume than conventional one.
Meanwhile, the plate-like SAPO-34 catalysts synthesized by this method exhibited higher selectivity to light olefins and longer lifetime in methanol-to-olefins (MTO) reaction than the traditional cubic SAPO-34 catalyst.
Compared with the traditional cubic SAPO-34 molecular sieve, the plate-like SAPO-34 catalysts synthesized by this method exhibited high selectivity to light olefins (ethylene + propylene) and long lifetime in methanol-to-olefins (MTO) reaction.
The electrodes with freestanding graphene nanosheets prepared by coating method exhibited good rate capability and reversibility at high scan rates (to 250 mV s−1) in electrochemical performances.
The double promoted catalyst prepared by polyol method exhibited exceptionally high activity (0.76%, v/v) at 598 K among all the other catalysts studied.
The CeO2-based samples with small-grained microstructures obtained from powders synthesised by hydrothermal method exhibited better ionic conductivity than samples with the same composition obtained from powders synthesised by the Pechinii method.
The Cu-Pd bimetallic catalysts supported on high-surface-area CeO2 synthesized by UG method exhibited at least two-fold higher CO conversion than the commercial CeO2 or that obtained by TA method.
All miRNAs analyzed by this method exhibited the expected sizes.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com