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The technique is based on a modified carbothermal reduction method.
In this report, a modified carbothermal reduction method was developed and employed to fabricate large-scale ZnO nanowires.
Besides, effective mass production process of ZnO nanowires by a modified carbothermal reduction method has been also reported [15].
In this study, a modified carbothermal reduction method for preparing large-scale ZnO nanowires in less than 5 min is reported.
Stannate, CoSnO3, which mixes the elements Co and Sn evenly at the atomic level, was used as precursor to prepare CoSnC by a modified carbothermal reduction method.
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In this paper, β-Sialon ceramic was formed with pyrophyllite as raw material and coke as reductant by carbothermal reduction and nitridation in flowing nitrogen atmosphere.
ZnO nanowires were grown by a typical carbothermal reduction process.
ZnO nanostructures were grown by carbothermal reduction of ZnO nanopowder [21] on (0001) 4H-SiC substrates.
Leaf-like structures were prepared by a carbothermal reduction process without any catalyst.
Then, Zn vapor was generated through the carbothermal reduction of ZnO powder at high temperature.
In this study, SiC nanorods were synthesized through the conventional carbothermal reduction of electrospun SiO2 Tb nanofibers.
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