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Effects of growth conditions on properties of zno nanostructures grown by hydrothermal methodesistive switching behavior of cr-doped srzro3 perovskite thin films by oxygen pressure change

  • Min Young Cho
  • , Min Su Kim
  • , Ghun Sik Kim
  • , Hyun Young Choi
  • , Su Min Jeon
  • , Kwang Gug Yim
  • , Dong Yul Lee
  • , Jin Soo Kim
  • , Jong Su Kim
  • , Joo In Lee
  • , Jae Young Leem*
  • *Corresponding author for this work
  • Inje University
  • Samsung
  • Yeungnam University
  • Korea Research Institute of Standards and Science

Research output: Contribution to journalJournal articlepeer-review

Abstract

Abstract ZnO nanostructures were grown on an Au seed layer by a hydrothermal method. The Au seed layer was deposited by ion sputter on a Si (100) substrate, and then the ZnO nanostructures were grown with different precursor concentrations ranging from 0.01 M to 0.3M at 150oC and different growth temperatures ranging from 100°C to 250°C with 0.3 M of precursor concentration. FE-SEM (field-emission scanning electron microscopy), XRD (X-ray diffraction), and PL (photoluminescence) were carried out to investigate the structural and optical properties of the ZnO nanostructures. The different morphologies are shown with different growth conditions by FE-SEM images. The density of the ZnO nanostructures changed significantly as the growth conditions changed. The density increased as the precursor concentration increased. The ZnO nanostructures are barely grown at 100°C and the ZnO nanostructure grown at 150°C has the highest density. The XRD pattern shows the ZnO (100), ZnO (002), ZnO (101) peaks, which indicated the ZnO structure has a wurtzite structure. The higher intensity and lower FWHM (full width at half maximum) of the ZnO peaks were observed at a growth temperature of 150°C, which indicated higher crystal quality. A near band edge emission (NBE) and a deep level emission (DLE) were observed at the PL spectra and the intensity of the DLE increased as the density of the ZnO nanostructures increased.

Original languageEnglish
Pages (from-to)262-266
Number of pages5
JournalKorean Journal of Materials Research
Volume20
Issue number5
DOIs
StatePublished - 2010

Keywords

  • Growth temperature
  • Hydrothermal method
  • Precursor concentration
  • Zinc oxide

Quacquarelli Symonds(QS) Subject Topics

  • Materials Science

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