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Highly Red Luminescence Properties from Ternary ZnCdTe Quantum Dots

机译:三元ZnCdTe量子点的高红色发光特性

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This paper reports the synthesis of ternary ZnCdTe quantum dots (QD) system with highly luminescent in the red region. The ternary QD system was prepared by quick injection of trioctylphosphine telluride (TOPTe) into a reactor that contains a hot mixed cadmium and zinc precursors, trioctylphosphine oxide and oleic acid at temperature of as low as 300°C. After the injection of TOPTe, the reaction was left undisturbed for a period of time to facilitate the growth of QDs and then quenched the reaction at a certain period of time. Photoluminescence analysis found that the ZnCdTe QDs exhibited highly luminescent properties with the quantum yield was calculated as high as ca. 60%. The emission wavelength was found to be in the range of 640 to 675 nm. It was also found that the QDs showed a relatively narrow spectral width, namely ca. 28 nm, reflecting a narrow quantum dots size distribution. Owing to their interesting photoluminescence properties, the ternary ZnCdTe QDs should find an extensive used in light-emitting diode, solar cell, laser and biolabelling.
机译:本文报道了在红色区域具有高发光度的三元ZnCdTe量子点(QD)系统的合成。通过将三辛基膦碲化物(TOPTe)快速注入反应器中来制备三元QD系统,该反应器中包含热混合的镉和锌前体,三辛基氧化膦和油酸,温度低至300°C。注入TOPTe后,将反应物静置一段时间以促进QD的生长,然后在一定时间段将反应淬灭。光致发光分析发现,ZnCdTe量子点表现出高度的发光特性,其量子产率被计算为约ca。 60%。发现发射波长在640至675nm的范围内。还发现,量子点显示出相对较窄的光谱宽度,即约。 28 nm,反映了窄的量子点尺寸分布。由于其有趣的光致发光特性,三元ZnCdTe量子点应该在发光二极管,太阳能电池,激光和生物标记中得到广泛应用。

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