Ni Chia-Chun, Kuo Sheng-Yang, Li Zong-Han, Wu Shung-Hsiang, Wu Ruei-Nan, Chen Chien-Yu, Yang C C
Opt Express. 2021 Feb 1;29(3):4067-4081. doi: 10.1364/OE.415679.
Förster resonance energy transfer (FRET) from a green-emitting quantum dot (GQD) into a red-emitting quantum dot (RQD) is an important mechanism in a multiple-color conversion process, particularly under the surface plasmon (SP) coupling condition for enhancing color conversion efficiency. Here, the dependencies of FRET efficiency on the relative concentrations of GQD and RQD in their mixtures and their surface molecule coatings for controlling surface charges are studied. Also, the SP coupling effects induced by two kinds of Ag nanoparticles on the emission behaviors of GQD and RQD are demonstrated, particularly when FRET is involved in the coupling process. FRET efficiency is reduced under the SP coupling condition. SP coupling can enhance the color conversion efficiency of either GQD or RQD. The combination of SP coupling and FRET can be used for controlling the relative converted light intensities in a multiple-color conversion process.
从绿色发光量子点(GQD)到红色发光量子点(RQD)的Förster共振能量转移(FRET)是多色转换过程中的一种重要机制,特别是在表面等离子体(SP)耦合条件下以提高颜色转换效率。在此,研究了FRET效率对其混合物中GQD和RQD的相对浓度以及用于控制表面电荷的表面分子涂层的依赖性。此外,还展示了两种银纳米颗粒对GQD和RQD发射行为的SP耦合效应,特别是当FRET参与耦合过程时。在SP耦合条件下FRET效率降低。SP耦合可以提高GQD或RQD的颜色转换效率。SP耦合和FRET的组合可用于在多色转换过程中控制相对转换光强度。