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Emission behaviors of colloidal quantum dots linked onto synthesized metal nanoparticles

机译:胶体量子点连接到合成金属纳米粒子上的排放行为

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With two different residual surfactants, four different metal nanoparticles (NPs), including two Au NPs and two Ag NPs are synthesized for linking with red-emitting CdZnSeS/ZnS colloidal quantum dots (QDs) to enhance QD emission efficiency. Those metal NPs are first connected with amino polyethylene glycol thiol of different molecular weights to avoid aggregation and make them positively charged. They can attract negatively charged QDs for inducing surface plasmon (SP) coupling such that either QD absorption or emission and hence overall color conversion efficiency can be enhanced. The enhancement of QD emission efficiency is evaluated through the comparison of time-resolved photoluminescence behaviors under different QD linkage conditions. Such results are confirmed by the measurement of the emission quantum efficiency of QD. It is found that by linking QDs onto Ag NPs, the QD emission efficiency is more enhanced, when compared with Au NPs. Also, depending on the synthesis process, the residual surfactant of citrate leads to a relatively large increment in QD emission efficiency, when compared to the surfactant of cetrimonium chloride. A more enhanced QD emission efficiency is caused by a higher QD linkage capability and a stronger SP coupling effect.
机译:用两种不同的残留表面活性剂,合成四种不同的金属纳米颗粒(NPS),包括两个Au NP和两个Ag NPS,用于连接与红发电压缩液/ ZnS胶体量子点(QDS)连接,以提高QD发射效率。这些金属NPS首先与不同分子量的氨基聚乙二醇硫醇连接,以避免聚集并使其正电荷。它们可以吸引带负电的QD,用于诱导表面等离子体(SP)耦合,使得可以提高QD吸收或发射,因此可以提高整体颜色转换效率。通过在不同QD连杆条件下的时间分辨光致发光行为的比较来评估QD发射效率的增强。通过测量QD的发射量子效率来证实这些结果。发现与AU NPS相比,通过将QDS链接到AG NPS上,QD发射效率更加增强。此外,根据合成过程,与加氯离子表面活性剂相比,柠檬酸盐的残余表面活性剂在QD发射效率的增加中导致QD发射效率相对较大。更高的QD发射效率是由较高的QD连杆能力和更强的SP耦合效果引起。

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