Published September 2014 | Version v1
Journal article

Photo-, cathodo- and thermoluminescent properties of dysprosium-doped HfO2 films deposited by ultrasonic spray pyrolysis

  • 1. Centro de Investigación en Ciencia Aplicada y Tecnología Avanzada del Instituto Politécnico Nacional, Unidad Legaria, Calzada Legaria 694, Colonia Irrigación, C.P. 11500 México, D.F. (Mexico)
  • 2. Instituto de Investigaciones en Materiales, Universidad Nacional Autónoma de México, Circuito Exterior, Ciudad Universitaria, Coyoacán 04510, D.F. (Mexico)
  • 3. Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, A.P. 14-740, México 07360, D.F. (Mexico)

Description

In this work, the photoluminescent (PL), cathodoluminescent (CL) and thermoluminescent (TL) properties of hafnium oxide films doped with trivalent dysprosium ions are reported. The films were deposited on glass substrates at temperatures ranging from 300 to 600 °C, using chlorides as precursor reagents. The surface morphology of films showed a veins shaped microstructure at low deposition temperatures, while at higher temperatures the formation of spherical particles was observed on the surface. X-ray diffraction showed the presence of HfO2 monoclinic phase in the films deposited at temperatures greater than 400 °C. The PL and CL spectra of the doped films showed the highest emission band centered at 575 nm corresponding to the transitions 4F9/26H13/2, which is a characteristic transition of Dy3+ ion. The greatest emission intensities were observed in samples doped with 1 atomic percent (at%) of DyCl3 in the precursor solution. Regarding the TL behavior, the glow curve of HfO2:Dy+3 films exhibited spectrum with one broad band centered at about 150 °C. The highest intensity TL response was observed on the films deposited at 500 °C. - Highlights: • Luminescent properties of dysprosium doped hafnium oxide (HfO2:Dy3+) films were analyzed. • HfO2:Dy3+ films were deposited by ultrasonic spray pyrolysis route. • Emission spectra of HfO2:Dy3+ were analyzed by cathode and photoluminescence techniques. • Luminescence mechanism in HfO2:Dy3+ was analyzed. • Results of HfO2:Dy3+ suggest it as a good candidate as UVR dosimeter

Availability note (English)

Available from http://dx.doi.org/10.1016/j.apradiso.2014.06.005

Additional details

Identifiers

DOI
10.1016/j.apradiso.2014.06.005;
PII
S0969-8043(14)00233-4;

Publishing Information

Journal Title
Applied Radiation and Isotopes
Journal Volume
92
Journal Issue
Complete
Journal Page Range
p. 91-95
ISSN
0969-8043
CODEN
ARISEF

Optional Information

Copyright
Copyright (c) 2014 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.