2010Crystal Growth & DesignRequires access

Facile Hydrothermal Synthesis of SrNb2O6Nanotubes with Rhombic Cross Sections

In Sun Cho, Sangwook Lee, Jun Hong Noh, Dongwook Kim, Dong Wook Kim, Hyun Suk Jung, Dong-Wan Kim, Dong Hoe Kim, Kug Sun Hong

Open publisher page 9 citations

Abstract

Novel SrNb 2 O 6 nanotubes with rhombic cross sections were produced via a facile hydrothermal route without any surfactants or templates by controlling the reaction conditions, such as the pH value and temperature. The prepared nanotubular powders were characterized using X-ray diffraction, field-emission electron microscopy (FESEM), and high-resolution transmission electron microscopy (HRTEM). From the FESEM and HRTEM analysis, it was found that the morphological evolution of the one-dimensional tubular structure was originated from the stepwise bending growth in the [011] direction around the a- axis and its rhombic cross section was connected to the crystallographic nature.

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What this paper is about

Novel SrNb 2 O 6 nanotubes with rhombic cross sections were produced via a facile hydrothermal route without any surfactants or templates by controlling the reaction conditions, such as the pH value and temperature. The prepared nanotubular powders were characterized using X-ray diffraction, field-emission electron microscopy (FESEM), and high-resolution transmission electron microscopy (HRTEM). From the FESEM and HRTEM analysis, it was found that the morphological evolution of the one-dimensional tubular structure was originated from the stepwise bending growth in the [011] direction around the a- axis and its rhombic cross section was connected to the crystallographic nature.

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Available abstract

Novel SrNb 2 O 6 nanotubes with rhombic cross sections were produced via a facile hydrothermal route without any surfactants or templates by controlling the reaction conditions, such as the pH value and temperature. The prepared nanotubular powders were characterized using X-ray diffraction, field-emission electron microscopy (FESEM), and high-resolution transmission electron microscopy (HRTEM). From the FESEM and HRTEM analysis, it was found that the morphological evolution of the one-dimensional tubular structure was originated from the stepwise bending growth in the [011] direction around the a- axis and its rhombic cross section was connected to the crystallographic nature.

Key concepts: High-resolution transmission electron microscopy, Transmission electron microscopy, Hydrothermal circulation, Hydrothermal synthesis, Crystallography, Materials science, Diffraction, Nanotechnology

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