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Energy-Transfer Behavior in Blue Color Ce3+, Eu2+Activated LaMgAl11O19 Phosphor Prepared by Combustion Synthesis Using Mixed of Fuel Technique


Affiliations
1 National Power Training Institute, Western Region, Nagpur, 440022, India
2 Department of Physics, Shri Ramdeobaba College of Engineering and Management, Katol Road, Nagpur-440013, India
3 Department of Physics, RTM Nagpur University, Nagpur, 440033, India
     

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Ce3+and Eu2+co-doped LaMgAl11O19, hexaaluminate phosphor has been successfully synthesized by one step combustion synthesis method using mixture of two fuels. Photoluminescence excitation and emission spectra are investigated in detail. Ce3+ and Eu2+activated phosphors show emission bands at 350 nm and 445 nm respectively in ultraviolet and blue region. Energy transfer behavior is observed from Ce3+ to Eu2+, which yields intense blue color emission at 445 nm. Concentration Quenching due to dipole–dipole interaction is observed. Maximum intensity of co-doped LaMgAl11O19 phosphor is obtained at 5 mole% of Cerium and 3 mole% of Europium. The CIE chromaticity of LAM:Ce3+, Eu2+ phosphor was compared with the commercial BAM. LaMgAl11O19, rare earth activated phosphor has potential candidate for UV LED, white LED and UV LASERs.

Keywords

Combustion Synthesis, Mixed Fuel, X-RD and PL, Energy Transfer Ce3+-Eu2+, CIE Chromaticity of LAM.
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  • Energy-Transfer Behavior in Blue Color Ce3+, Eu2+Activated LaMgAl11O19 Phosphor Prepared by Combustion Synthesis Using Mixed of Fuel Technique

Abstract Views: 206  |  PDF Views: 1

Authors

A. A. Pathak
National Power Training Institute, Western Region, Nagpur, 440022, India
P. J. Yadav
Department of Physics, Shri Ramdeobaba College of Engineering and Management, Katol Road, Nagpur-440013, India
C. P. Joshi
Department of Physics, Shri Ramdeobaba College of Engineering and Management, Katol Road, Nagpur-440013, India
S. V. Moharil
Department of Physics, RTM Nagpur University, Nagpur, 440033, India

Abstract


Ce3+and Eu2+co-doped LaMgAl11O19, hexaaluminate phosphor has been successfully synthesized by one step combustion synthesis method using mixture of two fuels. Photoluminescence excitation and emission spectra are investigated in detail. Ce3+ and Eu2+activated phosphors show emission bands at 350 nm and 445 nm respectively in ultraviolet and blue region. Energy transfer behavior is observed from Ce3+ to Eu2+, which yields intense blue color emission at 445 nm. Concentration Quenching due to dipole–dipole interaction is observed. Maximum intensity of co-doped LaMgAl11O19 phosphor is obtained at 5 mole% of Cerium and 3 mole% of Europium. The CIE chromaticity of LAM:Ce3+, Eu2+ phosphor was compared with the commercial BAM. LaMgAl11O19, rare earth activated phosphor has potential candidate for UV LED, white LED and UV LASERs.

Keywords


Combustion Synthesis, Mixed Fuel, X-RD and PL, Energy Transfer Ce3+-Eu2+, CIE Chromaticity of LAM.