Biju Vasudevanpillai, Itoh Tamitake, Baba Yoshinobu, Ishikawa Mitsuru
Nano-Bioanalysis Team, Health Technology Research Center, National Institute of Advanced Industrial Science and Technology (AIST), 2217-14 Hayashi-cho, Takamatsu, Kagawa 761-0395, Japan.
J Phys Chem B. 2006 Dec 28;110(51):26068-74. doi: 10.1021/jp0657890.
Development of quantum dot (QD) based device components requires controlled integration of QDs into different photonic and electronic materials. In this regard, introduction of methods for regular arrangement of QDs and investigation of properties of QD-based assemblies are important. In the current work we report (1) controlled conjugation of CdSe-ZnS QDs to sidewall-functionalized single-walled carbon nanotube (SWCNT) templates (2) and the effect of conjugation of QDs to SWCNT on the photoluminescence (PL) properties of QDs. We identified that PL intensity and lifetime of QDs are considerably reduced after conjugation to SWCNT. The origin of the quenching of the PL intensity and lifetime was discussed in terms of Förster resonance energy transfer (FRET). FRET involves nonradiative transfer of energy from a photoexcited QD (energy donor) to a nearby SWCNT (energy acceptor) in the ground state. This was examined by varying the density of QDs on SWCNT and conjugating smaller and bigger QDs to the same SWCNT. We estimated the FRET efficiency in QD-SWCNT conjugates from the quenching of the PL intensity and lifetime and identified that FRET is independent of the density and type of QDs on SWCNT but inherent to QD-SWCNT conjugates.
基于量子点(QD)的器件组件的开发需要将量子点可控地集成到不同的光子和电子材料中。在这方面,引入量子点的规则排列方法以及研究基于量子点的组件的性质很重要。在当前工作中,我们报告了(1)将CdSe-ZnS量子点可控地共轭到侧壁功能化的单壁碳纳米管(SWCNT)模板上,以及(2)量子点与SWCNT共轭对量子点光致发光(PL)性质的影响。我们发现,量子点与SWCNT共轭后,其PL强度和寿命显著降低。从福斯特共振能量转移(FRET)的角度讨论了PL强度和寿命猝灭的起源。FRET涉及从光激发的量子点(能量供体)到基态下附近的SWCNT(能量受体)的非辐射能量转移。通过改变SWCNT上量子点的密度以及将大小不同的量子点共轭到同一SWCNT上对此进行了研究。我们从PL强度和寿命的猝灭估计了量子点-碳纳米管共轭物中的FRET效率,并确定FRET与SWCNT上量子点的密度和类型无关,而是量子点-碳纳米管共轭物所固有的。