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Wavelength, concentration, and distance dependence of nonradiative energy transfer to a plane of gold nanoparticles

机译:非辐射能量转移至金纳米粒子平面的波长,浓度和距离依赖性

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Nonradiative energy transfer to metal nanoparticles is a technique used for optical-based distance measurements which is often implemented in sensing. Both F?rster resonant energy transfer (FRET) and nanometal surface energy transfer (NSET) mechanisms have been proposed for emission quenching in proximity to metal nanoparticles. Here quenching of emission of colloidal quantum dots in proximity to a monolayer of gold nanoparticles is investigated. Five differently sized CdTe quantum dots are used to probe the wavelength dependence of the quenching mechanism as their emission peak moves from on resonance to off resonance with respect to the localized surface plasmon peak of the gold nanoparticle layer. The gold nanoparticle concentration and distance dependences of energy transfer are discussed. Photoluminescence quenching and lifetime data are analyzed using both FRET and NSET models and the extracted characteristic distances are compared with theory. Good agreement with FRET theory has been found for quantum dots with emission close to the localized surface plasmon resonance, though larger than expected F?rster radii are observed for quantum dots with emission red-shifted with respect to the localized surface plasmon peak. Closer agreement between experimental and theoretical characteristic distances can be found across the full wavelength range within a NSET approach.
机译:非辐射能量转移到金属纳米颗粒是一种用于基于光学的距离测量的技术,通常在传感中实现。提出了Fsterster共振能量转移(FRET)和纳米金属表面能转移(NSET)机理,用于靠近金属纳米粒子的发射猝灭。在此研究了金纳米颗粒单层附近胶体量子点发射的猝灭。五个不同大小的CdTe量子点用于探测淬灭机理的波长依赖性,因为它们的发射峰相对于金纳米粒子层的局部表面等离激元峰从共振时移动到共振时。讨论了金纳米粒子的浓度和能量转移的距离依赖性。使用FRET和NSET模型分析光致发光猝灭和寿命数据,并将提取的特征距离与理论进行比较。对于发射接近于局部表面等离子体激元共振的量子点,已经发现与FRET理论有很好的一致性,尽管对于发射相对于局部表面等离子体激元峰红移的量子点,观察到的Frster半径比预期的大。在NSET方法中,可以在整个波长范围内找到实验和理论特征距离之间的更紧密一致性。

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