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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.
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.
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.
Cyclic voltammetry (CV) and chronoamperometry results demonstrated that the PtRu/MWCNT synthesized by this method exhibited a higher methanol oxidation current than did the PtRu/MWCNT synthesized by the more complex method using sodium borohydride as the reducing agent and tetraoctyl ammonium bromide as the stabilizer.
All miRNAs analyzed by this method exhibited the expected sizes.
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From Table 1 it can be seen that a total of 27 plants, screened by using this method, exhibited anti- Candida activity.
The films made by this method exhibit a high Raman signal due to the strong LSPR effect, which is produced in the narrow gap regions.
Our experiment results also show that these samples treated by this method exhibit superior activity for CO oxidation compared with original samples.
The low-density RF-aerogels synthesized by this method exhibit high surface areas, high porosities, and mesoporosity, which are beneficial to moisture diffusion and sensing reaction.
The two types of scaffolds produced by this method exhibit a typical fiber-mesh structure, with a fiber diameter of approximately 180 μm for SPCL and 210 μm for SPLA, with highly interconnected pores and a porosity of approximately 75%.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com