School of Physics and CRANN, Trinity College , Dublin 2, Ireland.
ACS Nano. 2014 Feb 25;8(2):1273-83. doi: 10.1021/nn406530m. Epub 2014 Feb 3.
The distance dependence of localized surface plasmon (LSP) coupled Förster resonance energy transfer (FRET) is experimentally and theoretically investigated using a trilayer structure composed of separated monolayers of donor and acceptor quantum dots with an intermediate Au nanoparticle layer. The dependence of the energy transfer efficiency, rate, and characteristic distance, as well as the enhancement of the acceptor emission, on the separations between the three constituent layers is examined. A d(-4) dependence of the energy transfer rate is observed for LSP-coupled FRET between the donor and acceptor planes with the increased energy transfer range described by an enhanced Förster radius. The conventional FRET rate also follows a d(-4) dependence in this geometry. The conditions under which this distance dependence is valid for LSP-coupled FRET are theoretically investigated. The influence of the placement of the intermediate Au NP is investigated, and it is shown that donor-plasmon coupling has a greater influence on the characteristic energy transfer range in this LSP-coupled FRET system. The LSP-enhanced Förster radius is dependent on the Au nanoparticle concentration. The potential to tune the characteristic energy transfer distance has implications for applications in nanophotonic devices or sensors.
采用由供体和受体量子点的分离单层以及中间 Au 纳米粒子层组成的三层结构,实验和理论研究了局域表面等离子体(LSP)耦合Förster 共振能量转移(FRET)的距离依赖性。研究了三个组成层之间的分离对能量转移效率、速率和特征距离以及受体发射增强的影响。在供体和受体平面之间的 LSP 耦合 FRET 中观察到能量转移速率的 d(-4)依赖性,并且描述能量转移范围增加的增强 Förster 半径表明具有增强的能量转移范围。在这种几何形状中,常规 FRET 速率也遵循 d(-4)依赖性。从理论上研究了 LSP 耦合 FRET 中这种距离依赖性有效的条件。研究了中间 Au NP 位置的影响,结果表明在这种 LSP 耦合 FRET 系统中,供体等离子体耦合对特征能量转移范围的影响更大。LSP 增强的 Förster 半径取决于 Au 纳米粒子的浓度。调整特征能量转移距离的潜力对于在纳米光子器件或传感器中的应用具有重要意义。