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ZnO nanowire CdO composite nanostructures were fabricated by a simple two-step process involving ammonia solution method and thermal evaporation.
This diversity strongly reflects preparation method and thermal history in both experimental and simulated systems.
The heated vessel was designed through a trial-and-error method and thermal analysis.
The structure was prepared by SiO2 nanosphere lithography, reactive-ion etching, conformal deposition method and thermal annealing treatment, successively.
In the present study, we report the synthesis and characterization of ZnO nanowire CdO composite structures by a two-step process involving chemical solution method and thermal evaporation.
Delta represents the degree of inversion (defined as the fraction of tetrahedral site occupied by Fe3+ cations) which depends on the synthesis method and thermal treatment.
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Alternative static experimental methods include the temperature oscillation method [16, 17, 28], micro-hot-strip method [29], steady-state cut-bar method [30], 3-ω method [18, 31, 32], radial heat-flow method [33], photo-thermal radiometry method [34], and thermal comparator method [19, 35].
Liquid-phase synthesis processes include metal salt reduction, reverse micelles, hydrothermal/solvothermal methods, and thermal decomposition of organometallic precursors.
The polymers synthesized were characterized by the spectroscopic methods and thermal analysis.
We investigate the properties of nanosized TiO2 rutile by electrochemical methods and thermal analysis.
The polymer synthesized was characterized by using spectroscopic methods and thermal analysis.
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