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Morphology-Controlled Three-Dimensional Nanoarchitectures Produced by Exploiting Vertical and In-Plane Crystallographic Orientations in Hydrothermal ZnO Crystals

Title
Morphology-Controlled Three-Dimensional Nanoarchitectures Produced by Exploiting Vertical and In-Plane Crystallographic Orientations in Hydrothermal ZnO Crystals
Author
박원일
Keywords
NANOWIRE ARRAYS; PIEZOELECTRIC NANOGENERATORS; SELF-ORGANIZATION; PATTERNED GROWTH; LOW-TEMPERATURE; THIN-FILM; NANOSTRUCTURES; GAN; SUBSTRATE; SAPPHIRE
Issue Date
2011-11
Publisher
Amer Chemical SOC
Citation
Crystal Growth & Design, 2011, 11(11), P.4927-4932
Abstract
Herein we describe the morphology-controlled synthesis of three-dimensional (3D) ZnO nanoarchitectures via a facile hydrothermal route. In this approach, vertical and in-plane crystallographic orientations of ZnO crystals were tuned by appropriate patterning of growth masks and seed layer control, which enabled the formation of three types of ZnO nanoarchitectures. If polycrystalline ZnO layers with poor c-axis orientation were used as a seed, flower-like ZnO nanoarchitectures composed: of radially oriented ZnO nanorods Were achieved. In the case of c-axis oriented ZnO seeds; polygonal ZnO pillars grew vertically at the center of the growth holes. Even in the latter case, multidomain columnar-joint structures or single domain crystal structures with well-defined hexagonal facets were achieved based on the existence of six-fold in-plane symmetry of the ZnO seed layers. These morphology-controlled ZnO nanoarchitectures exhibited clear differences in light propagation characteristics, which could be ascribed to strong light guiding in the one-dimensional nanostructures.
URI
https://pubs.acs.org/doi/abs/10.1021/cg200806a
ISSN
1528-7483
DOI
10.1021/cg200806a
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > MATERIALS SCIENCE AND ENGINEERING(신소재공학부) > Articles
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