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首页> 外文期刊>ACS nano >Picosecond Lifetimes with High Quantum Yields from Single-Photon-Emitting Colloidal Nanostructures at Room Temperature
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Picosecond Lifetimes with High Quantum Yields from Single-Photon-Emitting Colloidal Nanostructures at Room Temperature

机译:室温下单光子发射胶体纳米结构具有高量子产率的皮秒寿命

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摘要

Minimizing the luminescence lifetime while maintaining a high emission quantum yield is paramount in optimizing the excitation cross-section, radiative decay rate, and brightness of quantum solid-state light sources, particularly at room temperature, where nonradiative processes can dominate. We demonstrate here that DNA-templated 60 and 80 nm diameter gold nanoparticle dimers, featuring one fluorescent molecule, provide single-photon emission with lifetimes that can fall below 10 ps and typical quantum yields in a 45-70% range. Since these colloidal nanostructures are obtained as a purified aqueous suspension, fluorescence spectroscopy can be performed on both fixed and freely diffusing nanostructures to quantitatively estimate the distributions of decay rate and fluorescence intensity enhancements. These data are in excellent agreement with theoretical calculations and demonstrate that millions of bright fluorescent nanostructures, with radiative lifetimes below 100 ps, can be produced in parallel.
机译:在优化激发截面,辐射衰减率和量子固态光源的亮度方面,最重要的是在保持高发射量子产率的同时最小化发光寿命,尤其是在室温下,其中非辐射过程可能占主导。我们在这里证明了以DNA为模板的60和80 nm直径的金纳米颗粒二聚体,具有一个荧光分子,提供了单光子发射,其寿命可以低于10 ps,典型的量子产率在45-70%的范围内。由于这些胶体纳米结构是作为纯化的水悬浮液获得的,因此可以对固定和自由扩散的纳米结构进行荧光光谱分析,以定量估算衰减率和荧光强度增强的分布。这些数据与理论计算非常吻合,证明可以并行生产辐射寿命低于100 ps的数百万个明亮的荧光纳米结构。

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