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Among these methods, the hydrothermal method is used to prepare ZnO nanorods due to its low cost and simplicity [16, 25, 26].
Among the low-temperature methods, the hydrothermal method is very versatile for the synthesis of nanophase materials and has been well established.
Among the wet chemical methods, the hydrothermal process is thought as a versatile, low-cost and environment-friendly method to prepare barium titanate nanoparticles with controlled sizes and morphologies [20, 27, 28].
Among various synthesis methods, the hydrothermal synthesis route has been considered one of the most promising synthetic routes for fabricating binary semiconductor crystals because of its low process cost, easy process control, and high product reproducibility [9].
Among all these methods, the hydrothermal synthesis may be the most simple, low-cost, and effective way to control the surface morphology of ZnO at relatively low temperatures, while exempted from further annealing.
Similar(55)
In general, TNTs can be synthesized by four common methods: (i) the hydrothermal method, (ii) the electrochemical anodization method, (iii) the template-assisted method and (iv) the sol-gel method.
Among these methods, the aqueous hydrothermal technique is an easy and convenient method for the cultivation of ZnO NRs.
We propose a new method for the hydrothermal decomposition of cellulose using a strong gravitational field to recover useful chemical intermediates.
We report the synthesis of the ZnO nanorods on the CuO nanofibers prepared by using the electrospinning method along with the hydrothermal method.
Gao et al. used a phosphatation method which was named the hydrothermal dispersion method.
Among the various methods, hydrothermal method is a facile, dominant tool for the synthesis of anisotropic nanoscale materials.
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