Steady state and time–resolved luminescence of Tb3+/Ce3+ doped ABS-BGP glasses

2019 
Abstract ABS-BGP (Al 2 O 3 -B 2 O 3 -SiO 2 -BaCO 3 -Gd 2 O 3 -P 2 O 5 ) glasses doped with different concentrations of Ce 3+ and Tb 3+ were prepared by high temperature melting method. The luminescent properties using steady state and time-resolved luminescence were investigated. The time-resolved luminescence was studied by pulse photo- and cathodoluminescence type of excitation. The strong “blue” emission due to radiation transition of Ce 3+ ions under selective excitation in nanosecond time range was recorded. The decay time of Tb 3+ ions under the electron beam excitation at 542 nm is 2.2 ms. It was demonstrated that the luminescence efficiency does not depend on the Ce 3+ concentration excited by the LED chip. The decay kinetics are characterized by a single exponential function with the decay time τ = 30 ns under photoexcitation. However there are two components of luminescence decay τ 1 = 35 ns, τ 2 = 540 ns when excited by a flow of electrons. The difference in luminescence decay kinetics under various type of excitation was discussed. The results indicate that ABS-BGP glasses would be excellent candidate for visible luminescent device applications.
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