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Highly stable CdTe quantum dots hosted in gypsum via a flocculation-precipitation method

机译:高度稳定的CDTE量子点通过絮凝沉淀法在石膏中托管

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Poor stability hinders the practical application of aqueous CdTe quantum dots (QDs) in optoelectronic devices. In this work, a flocculation-precipitation method is demonstrated to host aqueous CdTe QDs in gypsum to form CdTe-gypsum nanocomposites, which is simple, effective and environmental-friendly. Ascribed to gypsum acting as a tight and robust matrix protection agent, the photo-, thermal-, anti-acid and long-term stability of CdTe QDs were remarkably improved. Moreover, this approach solved the problem of incompatibility between aqueous QDs and epoxy resin, allowing for the application of aqueous QDs in white light emitting diodes (WLEDs), based on which a WLED with the red-emission nanocomposites used as a color-conversion layer was successfully fabricated. These results indicate the potential of this technique in stabilizing aqueous QDs as well as their practical application in optoelectronic devices.
机译:稳定性差阻碍了CDTE量子点(QDS)在光电器件中的实际应用。 在这项工作中,将絮凝沉淀方法证明在石膏中宿主CdTe QDS以形成CdTe-Gypsum纳米复合材料,这是简单,有效和环保的。 归因于用作紧密且鲁棒基质保护剂的石膏,显着改善了CDTE QD的光,热 - ,抗酸和长期稳定性。 此外,这种方法解决了QDS水溶液和环氧树脂之间不相容的问题,允许在白色发光二极管(WLED)中施加QDS水溶液,基于其用作颜色转换层的红发射纳米复合材料的WLED 成功制作。 这些结果表明该技术在稳定QDS水溶液中的潜力以及它们在光电器件中的实际应用。

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