论文标题

液滴中的定量显微镜温度计,装有金纳米颗粒

Quantitative Microscale Thermometry in Droplets Loaded with Gold Nanoparticles

论文作者

Sixdenier, Lucas, Baffou, Guillaume, Tribet, Christophe, Marie, Emmanuelle

论文摘要

金纳米颗粒(AUNP)越来越多地用于其热质特性,即它们在等离子体共振时将光转化为热量的能力。但是,测量通过AUNP的组件在微观尺度生成的温度梯度仍然具有挑战性,尤其是当它们在三个维度上随机分布时。在这里,我们引入了一种无标签的温度计方法,结合了光波段显微镜和数值模拟,以推断由由装有Aunps的乳液微副子组成的三维模型系统消散的加热能力。这种方法可在辐射后访问液滴核心的温度,而无需外部校准。这些定量结果通过观察在液滴中添加的热响应聚合物的相变为原位热探针,从定性上验证。这种多功能的调节方法对于涉及AUNP的各种三维微型系统的非侵入性温度测量值有望,例如胶体热源,例如几种轻响应性药物递送系统。

Gold nanoparticles (AuNPs) are increasingly used for their thermoplasmonic properties, i.e. their ability to convert light into heat upon plasmon resonance. However, measuring temperature gradients generated at the microscale by assemblies of AuNPs remains challenging, especially when they are randomly distributed in three dimensions. Here, we introduce a label-free thermometry approach, combining optical wavefront microscopy and numerical simulations, to infer the heating power dissipated by a three-dimensional model system consisting in emulsion microdroplets loaded with AuNPs. This approach gives access to the temperature reached in the core of droplets upon irradiation without need of extrinsic calibration. These quantitative results are validated qualitatively via the observation of the phase transition of a thermoresponsive polymer added in the droplet as an in situ thermal probe. This versatile thermometry approach is promising for non-invasive temperature measurements in various three-dimensional microsystems involving AuNPs as colloidal heat sources, such as several light-responsive drug delivery systems.

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