ZnO nanorods/nanoflowers and their applications
David B. Rihtnesberg, Susanne Almqvist, Qin Lin Wang, Abhilash Sugunan, Xuran Yang, Muhammet S. Toprak, Zahra Besharat, M. Göthelid
Abstract
David B. Rihtnesberg, Susanne Almqvist, Qin Lin Wang, Abhilash Sugunan, Xuran Yang, Muhammet S. Toprak, Zahra Besharat, M. Göthelid
Abstract
Single-crystalline zinc oxide (ZnO) nanorods (NRs) have been synthesized through a chemical bath deposition method. Their diameter is about 80 nm, and their length range from 1 μm to 7 μm can be controlled by growth time. Formation of nanoflower arrays composed of nanorods has been also achieved utilizing a standard micro-fabrication technique. Two types of ZnO nanorods devices are detailed to demonstrate their optoelectronic applications.
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Single-crystalline zinc oxide (ZnO) nanorods (NRs) have been synthesized through a chemical bath deposition method. Their diameter is about 80 nm, and their length range from 1 μm to 7 μm can be controlled by growth time. Formation of nanoflower arrays composed of nanorods has been also achieved utilizing a standard micro-fabrication technique. Two types of ZnO nanorods devices are detailed to demonstrate their optoelectronic applications.
Key concepts: Nanorod, Nanoflower, Materials science, Fabrication, Nanotechnology, Zinc, Deposition (geology), Chemical bath deposition