Fast synthesize ZnO quantum dots via ultrasonic method

Weimin Yang, Bing Zhang, Nan Ding, Wenhao Ding, Lixi Wang, Mingxun Yu, Qitu Zhang

Research output: Contribution to journalArticlepeer-review

64 Scopus citations

Abstract

Green emission ZnO quantum dots were synthesized by an ultrasonic sol-gel method. The ZnO quantum dots were synthesized in various ultrasonic temperature and time. Photoluminescence properties of these ZnO quantum dots were measured. Time-resolved photoluminescence decay spectra were also taken to discover the change of defects amount during the reaction. Both ultrasonic temperature and time could affect the type and amount of defects in ZnO quantum dots. Total defects of ZnO quantum dots decreased with the increasing of ultrasonic temperature and time. The dangling bonds defects disappeared faster than the optical defects. Types of optical defects first changed from oxygen interstitial defects to oxygen vacancy and zinc interstitial defects. Then transformed back to oxygen interstitial defects again. The sizes of ZnO quantum dots would be controlled by both ultrasonic temperature and time as well. That is, with the increasing of ultrasonic temperature and time, the sizes of ZnO quantum dots first decreased then increased. Moreover, concentrated raw materials solution brought larger sizes and more optical defects of ZnO quantum dots.

Original languageEnglish
Pages (from-to)103-112
Number of pages10
JournalUltrasonics Sonochemistry
Volume30
DOIs
StatePublished - May 2016

Keywords

  • Colloidal quantum dots
  • Ultrasonic method
  • Zinc oxide

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