首页> 外文期刊>Journal of Sol-Gel Science and Technology >Two color up-conversion emissions of Er~(3+) -doped A12O3 nanopowders prepared by non-aqueous sol-gel method
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Two color up-conversion emissions of Er~(3+) -doped A12O3 nanopowders prepared by non-aqueous sol-gel method

机译:非水溶胶-凝胶法制备的掺Er〜(3+)掺杂的Al2O3纳米粉的两种颜色上转换发射

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Er~(3+)-doped A12O3 nanopowders have been prepared by the non-aqueous sol-gel method using the aluminum isopropoxide as precursor, acetylacetone as a chelating agent, nitric acid as a catalyzer, and hydrated erbium nitrate as a dopant under isopropanol environment. The different phase structure, including three crystalline types of (Al, Er)2O3 phases, alpha, gamma, theta, and an Er-Al-O stoichiometric compound phase, Al_(10)Er6O_(24), was observed for the 0.01-0.5 mol% Er~(3+)-doped A12O3 nanopowders at the sintering temperature of 1,000 °C. The green and red up-conversion emissions centered at about 523, 545 and 660 nm, corresponding respectively to the ~2H_(11/2), ~4S_(3/ 2)->I_(15/2) and ~4F_(9/2)->~4I_(15/2) transitions of Er~(3+), were detected by a 978 nm semiconductor laser diodes excitation. With increasing Er~(3+) doping concentration from 0.01 to 0.1 mol%, the intensity of the green and red emissions increased with a decrease of the intensity ratio of the green to red emission. When the Er~(3+) doping concentration rose to 5 mol%, the intensity of the green and red emissions decreased with an increase of their intensity ratio. The maximum intensity of both the green and red emissions with the minimum of intensity ratio was obtained, respectively, for the 0.1 mol% Er~(3+)-doped Al2O3 nanopowders composed of a single alpha-(Al,Er)2O3 phase. The intensity ratio of the green emission at 523 and 545 nm increased monotonously for all Er~(3+) doping concentrations. The two-photon absorption up-conversion process was involved in the green and red up-conversion emissions of the Er~(3+)-doped Al2O3 nanopowders.
机译:以异丙醇铝为前驱体,乙酰丙酮为螯合剂,硝酸为催化剂,水合硝酸er为掺杂剂,通过非水溶胶-凝胶法制备了掺Er〜(3+)的Al2O3纳米粉。环境。观察到的不同相结构包括0.01(-)的三种晶体类型的(Al,Er)2O3相,α,γ,θ和Er-Al-O化学计量化合物相Al_(10)Er6O_(24)。 0.5 mol%的Er〜(3+)掺杂的Al2O3纳米粉在1000°C的烧结温度下。绿色和红色上转换发射的中心波长约为523、545和660 nm,分别对应于〜2H_(11/2),〜4S_(3/2)-> I_(15/2)和〜4F_(9通过978 nm半导体激光二极管激发检测到Er〜(3+)的/ 2)-> ~~ 4I_(15/2)跃迁。随着Er〜(3+)掺杂浓度从0.01 mol%增加到0.1 mol%,绿色和红色发射的强度随着绿色与红色发射的强度比的降低而增加。当Er〜(3+)掺杂浓度增加到5 mol%时,绿色和红色发射的强度随强度比的增加而降低。对于由单个α-(Al,Er)2O3相组成的0.1 mol%掺Er〜(3+)的Al2O3纳米粉,分别获得了绿色和红色发射的最大强度和最小的强度比。对于所有Er〜(3+)掺杂浓度,在523和545nm处绿色发射的强度比单调增加。掺Er〜(3+)的Al2O3纳米粉的绿色和红色上转换发射涉及双光子吸收上转换过程。

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