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Hydrothermal Synthesis and Mechanism Study of Dysprosium Hydroxide Nanorods

Hainian Wang

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Abstract

A facile and low-cost preparation of Dy(OH)3 nanorods was introduced in this paper.The Dy(OH)3 nanorods were prepared through hydrothermal method,which was maintained at 180 ℃ for 48 h.Dy2O3 powder was used as the precursor,and KOH was employed as the mineralizer.The reaction condition is mild,pollution-free and green environmental-protective.The X-ray diffraction(XRD) and transmission electron microscope(TEM) were employed to characterize the as-obtained low-dimensional nanostructures.The effects of mineralizer concentration and hydrothermal temperature on the morphologies of the products were also studied.

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What this paper is about

A facile and low-cost preparation of Dy(OH)3 nanorods was introduced in this paper.The Dy(OH)3 nanorods were prepared through hydrothermal method,which was maintained at 180 ℃ for 48 h.Dy2O3 powder was used as the precursor,and KOH was employed as the mineralizer.The reaction condition is mild,pollution-free and green environmental-protective.The X-ray diffraction(XRD) and transmission electron microscope(TEM) were employed to characterize the as-obtained low-dimensional nanostructures.The effects of mineralizer concentration and hydrothermal temperature on the morphologies of the products were also studied.

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Available abstract

A facile and low-cost preparation of Dy(OH)3 nanorods was introduced in this paper.The Dy(OH)3 nanorods were prepared through hydrothermal method,which was maintained at 180 ℃ for 48 h.Dy2O3 powder was used as the precursor,and KOH was employed as the mineralizer.The reaction condition is mild,pollution-free and green environmental-protective.The X-ray diffraction(XRD) and transmission electron microscope(TEM) were employed to characterize the as-obtained low-dimensional nanostructures.The effects of mineralizer concentration and hydrothermal temperature on the morphologies of the products were also studied.

Key concepts: Nanorod, Hydrothermal circulation, Materials science, Dysprosium, Transmission electron microscopy, Chemical engineering, Hydroxide, Hydrothermal synthesis

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