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Experimental setup for light-to-heat NIR conversion measurements of gold nanoparticle solutions

机译:金纳米粒子溶液光对热导液转换测量的实验装置

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摘要

In recent years, there is a constantly increasing interest in the application of nanoparticles for cancer diagnosis and cancer therapy. In this respect, the most promising nano-objects at present are the gold nanoparticles. A very convenient and powerful property of these objects is their ability to increase their temperature under electro-magnetic irradiation with certain wavelength. In our research we have directed our efforts toward particular nano-objects specifically sensitive to electromagnetic radiation in the near-infrared region (NIR). In order to study the photothermic properties of the solutions of gold nanoparticles in the NIR we constructed a specific electronic setup consisting of a laser system with interchangeable laser diodes with different wavelength NIR light, a thermally-insulated cuvette-holder compartment with temperature measuring probes and a NIR spectrometer to control the stimulated fluorescence emission of the nanoparticle solutions. The temperature measurement compartment with the thermal-insulated cuvette holder was designed to maintain the solutions’ temperature at a fixed value right before the moment of laser irradiation. To maintain the measurement setup at a fixed temperature before the irradiation we used a thermal stabilized system based on two Peltier cells with electronic temperature control. The temperatures of the ambient air and the temperature of the cuvette walls were continuously measured in order to make corrections about the temperature dissipation during the irradiation.
机译:近年来,对纳米粒子适用于癌症诊断和癌症治疗的兴趣不断增加。在这方面,目前最有前途的纳米物体是金纳米颗粒。这些物体的一个非常方便和强大的财产是它们在具有某些波长的电磁照射下提高温度的能力。在我们的研究中,我们将我们的努力朝着近红外区域(NIR)中专门对电磁辐射特异性敏感的特定纳米物体。为了研究NIR中金纳米颗粒的溶液的光热性质,我们构成了由具有不同波长NIR光的可互换激光二极管的激光系统构成的特定电子设置,具有温度测量探针的绝热杯夹池和具有温度测量探针一种用于控制纳米颗粒溶液的刺激荧光发射的NIR光谱仪。具有绝热比色皿支架的温度测量室被设计为在激光照射的时刻之前将溶液温度保持在固定值。为了在照射前保持测量设置,我们使用基于两个具有电子温度控制的Peltier细胞的热稳定系统。连续测量环境空气的温度和比色皿壁的温度,以便在照射期间进行校正围绕温度耗散。

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