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Yuan et al. have synthesized CuS (nanoflower)/rGo composite using ultrafast microwave-assisted hydrothermal method using Cu(NO3 2 and thiourea for lithium storage application [21].
Cu films were fabricated on the Al2O3 substrates using an AD method, using Cu powder with a primary particle size of ~2 μm (Nippon Atomized Metal Powders co., Ltd., Japan).
CuO nanoleaves on graphene sheets (CuO/GNS) composite was successfully synthesized by a facile microwave-assisted method using Cu(NO3 2·3H2O, NaOH and ammonia as raw materials and absolute ethanol as solvent.
A general and convenient solid-phase synthesis method using Cu(i -mediated alkyne–azi -mediatedhemistry for alkyne azidef an azide derivative of a fluoresclicklabel to an alkyne derivative of a peptide chemistryd to a morpholino oligonucleotide (PMO).
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Although our imaging method using Cu-DOTATATE seems promising, it is inherently challenged by low tracer uptake and a poor spatial resolution that could limit the usefulness.
The DMP method uses Cu, so EDTA would interfere with the analysis.
This report described a novel, sensitive, and widely applicable detection method using copper nanoparticles (Cu NPs)/MWNTs/GCE.
Cu2O hierarchical nanostructures with different morphologies were successfully synthesized by a solvothermal method using copper (II) nitrate trihydrate (Cu(NO3 2⋅3H2O) and ethylene glycol (EG) as initial reagents.
Here we synthesize Cu nanoparticles and noncrystalline CuNxCy species co-decorated ketjenblack (KB) carbon catalyst (denoted as Cu-N-KB-acid) by a facile and scalable method using copper sulfate, melamine, and KB as raw materials.
The pony-size Cu nanoparticles confined in mesoporous C-N were directly synthesized by chemical vapor deposition (CVD) method using floating Cu atoms.
Nevertheless, CVD is a promising method for growing high-quality graphene over a large area using Cu foils.
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