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Photothermal Response of Hollow Gold Nanorods under Femtosecond Laser Irradiation

机译:飞秒激光辐照空心金纳米棒的光热响应

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摘要

The photothermal kinetics of hollow gold nanorod (HGNR) under femtosecond laser irradiation are studied numerically with finite-element methods and a two-temperature model. Compared with solid gold nanorod (SGNR) with the same aspect ratio (AR), the localized surface plasmon resonance (LSPR) peak of HGNR can be red-shifted to the second near-infrared window, and the absorption cross-section of HGNR can be larger than that of SGNR. In addition, under the influence of an applied numerically electromagnetic field (simulated femtosecond laser irradiation), the heat generated by HGNR makes the temperature rise of the surrounding medium faster and higher. Compared with SGNR with the same resonance wavelength, HGNR has a slightly smaller absorption cross-section but can achieve a higher temperature rise of the external medium. In addition, the laser energy, required to achieve the critical temperature for selective photothermal damage of tumor cells, is also significantly reduced. Moreover, with the same incident laser energy, the decreasing of HGNR shell thickness leads to an increase of the temperature rise of the external medium, while the change of femtosecond laser pulse width will not significantly change the temperature rise of its lattice and the external medium. In short, this study aims to provide some useful insights for the applications of HGNR in photothermal tumor therapy.
机译:用有限元方法和双温度模型对飞秒激光辐照下空心金纳米棒(HGNR)的光热动力学进行了数值研究。与具有相同纵横比(AR)的固态金纳米棒(SGNR)相比,HGNR的局部表面等离子体共振(LSPR)峰可以红移到第二个近红外窗口,并且HGNR的吸收截面可以大于SGNR。另外,在施加的数字电磁场(模拟飞秒激光辐照)的影响下,HGNR产生的热量使周围介质的温度升高越来越快。与具有相同谐振波长的SGNR相比,HGNR的吸收截面稍小,但可以实现更高的外部介质温升。此外,达到对肿瘤细胞进行选择性光热损伤的临界温度所需的激光能量也大大降低了。此外,在相同的入射激光能量下,HGNR壳厚度的减小导致外部介质的温度升高增加,而飞秒激光脉冲宽度的变化不会显着改变其晶格和外部介质的温度升高。简而言之,本研究旨在为HGNR在光热肿瘤治疗中的应用提供一些有用的见识。

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