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Nematic liquid crystals used to control photo-thermal effects in gold nanoparticles

机译:用于控制金纳米颗粒中的光热效应的甲型液晶

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We report on photo-thermal effects observed in gold nanoparticles (GNPs) dispersed in Nematic Liquid Crystals (NLCs). Under a suitable optical radiation, GNPs exhibit a strong light absorption/scattering; the effect depends on the refractive index of the medium surrounding the nanoparticles, which can be electrically or optically tuned. In this way, the system represents an ideal nano-source of heat, remotely controllable by light to adjust the temperature at the nanoscale. Photo-induced temperature variations in GNPs dispersed in NLCs have been investigated by implementing a theoretical model based on the thermal heating equation applied to an anisotropic medium; theoretical predictions have been compared with results of experiments carried out in a NLC medium hosting GNPs. Both theory and experiments represent a step forward to understand the physics of heat production at the nanoscale, with applications that range from photonics to nanomedicine.
机译:我们在分散在向列液晶(NLC)中分散的金纳米颗粒(GNP)中观察到的光热效应。在合适的光学辐射下,GNP表现出强光吸收/散射;效果取决于纳米颗粒周围的介质的折射率,其可以电或光学调谐。以这种方式,该系统代表了一种理想的纳米热源,通过光远离可控制以调节纳米级的温度。通过实施基于施加到各向异性介质的热加热方程的理论模型来研究分散在NLC中的GNPS的光诱导的温度变化;将理论预测与在托管GNPS的NLC培养基中进行的实验结果进行了比较。理论和实验既代表了了解纳米级热源的热量物理学的一步,其中应用范围从光子学到纳米医生。

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