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Influence of intra-ensemble energy transfer on the properties of nanocrystal quantum dot structures and devices

机译:团内能量转移对纳米晶量子点结构和器件性能的影响

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The impact of intra-ensemble Förster resonant energy transfer (FRET) on the optical properties of monodispersed quantum dot (QD) monolayers and a donor/acceptor FRET bilayer structure are presented. The QD structures are characterized by steady-state absorption and photoluminescence (PL) spectroscopy as well as time-resolved PL measurements. The optical properties of the monodispersed monolayers, such as peak emission wavelength and PL decays, are strongly influenced by FRET from smaller to larger QDs within the ensemble. Comparing several QD samples, the spectral overlap of the QD ensemble and the QD concentration were identified as parameters that allow for tuning of FRET in monodispersed QD structures. For the donor/acceptor QD bilayer structure an unexpected decrease of the FRET efficiency between donor and acceptor layers is observed with increasing donor QD concentration. The concentration-dependent donor lifetime and a constant donor-acceptor FRET rate can explain this decrease within the FRET rate model. Even though the donor-acceptor FRET rate is donor-concentration independent – as expected from theory – its competition with donor-donor energy transfer leads to a concentration dependence of the FRET efficiency from donors to acceptors. This shows that intra-ensemble FRET can have an important impact on device performance.
机译:提出了集合内Förster共振能量转移(FRET)对单分散量子点(QD)单层和供体/受体FRET双层结构的光学性能的影响。 QD结构的特征在于稳态吸收和光致发光(PL)光谱以及时间分辨的PL测量。单分散单分子层的光学特性(例如峰值发射波长和PL衰减)受FRET从整体中的较小QD到较大QD的强烈影响。比较几个QD样品,可以确定QD集合体的光谱重叠和QD浓度是可以调整单分散QD结构中FRET的参数。对于供体/受体QD双层结构,随着供体QD浓度的增加,观察到供体和受体层之间的FRET效率出乎意料的下降。浓度依赖的供体寿命和恒定的供体-受体FRET速率可以解释FRET速率模型中的这种下降。尽管从理论上可以预期,尽管供体-受体FRET速率与供体浓度无关,但它与供体-供体能量转移的竞争导致FRET效率从供体到受体的浓度依赖性。这表明集合内FRET可能对设备性能产生重要影响。

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