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Luminescence studies of zinc borates activated with different concentrations of Ce and La under x-ray and electron excitation

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Akademik Birimler

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Küçük, Nil

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Ayvacıklı, Mehmet
Akça, S.
Yüksel, Mehmet
Guinea, J. Garcia
Karabulut, Yüksel
Canımoglu, A.
Topaksu, Mustafa
Can, Nurdoğan

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Elsevier

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Özet

Several ZnB2O4 powder samples having dopants concentrations of 0.1, 0.01, 0.04 wt% Ce and La were prepared using the nitric acid method via the starting oxides. Several complementary methods such as powder X-ray diffraction (XRD), thermal analyses environmental scanning electron microscopy (ESEM), Radioluminescence (RL) and Cathodoluminescence (CL) techniques were used. Unique luminescence properties of Ce doped ZnB2O4 powder samples are reported for the first time. A new luminescence bands appearing in red part of the spectrum and having all the characteristics of Ce3+ were obtained from RL results. Changing the Ce and La concentration of 0.01-0.1 wt% leads to an increase in RL and CL intensities of Ce3+ and La3+ ions and also CL emission spectra of ZnB2O4 show gradual shift towards longer wavelength. When we compare the luminescence intensity of the samples it is seen that Ce doped ZnB2O4 has the highest intense whereas La doped ZnB2O4 has the lowest one. However, emission spectra of both Ce and La doped samples kept unchanged.

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Konusu

Chemistry, Nuclear science & technology, Radiology, nuclear medicine & medical imaging, ESEM, Luminescence, Rare earth, XRD, ZnB2O4, Microwave dielectric-properties, Thermoluminescence, Photoluminescence, Temperature, Znb2o4, Ceramics, Emission, Eu, Doping (additives), Emission spectroscopy, Light emission, Rare earths, Scanning electron microscopy, Complementary methods, Environmental scanning electron microscopies (ESEM);, ESEM, Luminescence properties, Luminescence studies, Powder X ray diffraction, Luminescence intensity, Luminescence

Alıntı

Küçük, N. vd. (2017). ''Luminescence studies of zinc borates activated with different concentrations of Ce and La under x-ray and electron excitation''. Applied Radiation and Isotopes, 127, 35-40.

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