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Lab-in-fiber platform for plasmonic photothermal study

机译:纤维纤维纤维热学研究平台

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A lab-in-fiber platform, comprising a photonic crystal fiber component for light-sample interaction, was experimentally demonstrated to be effective as a sensor and micro-reactor. Specifically, it enabled the discrimination between free and liposome-encapsulated fluorophores as well as allowed for the excitation of in-fiber plasmonic photothermal effects, by alternating between different fiber-coupled inputs. The significant increase in fluorescence emissions upon release of fluorophores, encapsulated within liposomes at self-quenching concentrations, was perceived as a shoulder in the device's spectral output that otherwise only comprises the input excitation. Markedly, the observed shoulder was only discernible when the photonic crystal fiber was placed in a bent orientation. This was explained to be associated with the bending-induced refractive index profile changes in the fiber cross section that led to increased amounts of evanescent fields for light-sample interactions. Results highlighted the viability of the lab-in-fiber platform as an alternative to current lab-on-a-chip devices.
机译:实验证明了包括用于光样相互作用的光子晶体纤维组分的纤维纤维组分,作为传感器和微反应器是有效的。具体地,它通过在不同的纤维耦合输入之间交替,使其使自由和脂质体包封的荧光团之间的辨别允许激发纤维等离子体光热效应。在自猝灭浓度下释放荧光团释放荧光团的显着增加被认为是装置的光谱输出中的肩部,否则仅包括输入激励。显着地,当光子晶体纤维置于弯曲取向时,仅观察到的肩部仅辨别。这被解释为与纤维横截面中的弯曲诱导的折射率曲线变化相关联,该横截面导致用于光样相互作用的渐逝场的量增加。结果强调了实验室内平台的可行性作为当前实验室内设备的替代方案。

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