Heating of nanoparticles and their environment by laser radiation and applications

IF 2.7
V. Pustovalov
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Abstract

This review considers the fundamental dynamic processes involved in the laser heating of metal nanoparticles and their subsequent cooling. Of particular interest are the absorption of laser energy by nanoparticles, the heating of a single nanoparticle or an ensemble thereof, and the dissipation of the energy of nanoparticles due to heat exchange with the environment. The goal is to consider the dependences and values of the temperatures of the nanoparticles and the environment, their time scales, and other parameters that describe these processes. Experimental results and analytical studies on the heating of single metal nanoparticles by laser pulses are discussed, including the laser thresholds for initiating subsequent photothermal processes, how temperature influences the optical properties, and the heating of gold nanoparticles by laser pulses. Experimental studies of the heating of an ensemble of nanoparticles and the results of an analytical study of the heating of an ensemble of nanoparticles and the environment by laser radiation are considered. Nanothermometry methods for nanoparticles under laser heating are considered, including changes in the refractive indices of metals and spectral thermometry of optical scattering of nanoparticles, Raman spectroscopy, the thermal distortion of the refractive index of an environment heated by a nanoparticle, and thermochemical phase transitions in lipid bilayers surrounding a heated nanoparticle. Understanding the sequence of events after radiation absorption and their time scales underlies many applications of nanoparticles. The application fields for the laser heating of nanoparticles are reviewed, including thermochemical reactions and selective nanophotothermolysis initiated in the environment by laser-heated nanoparticles, thermal radiation emission by nanoparticles and laser-induced incandescence, electron and ion emission of heated nanoparticles, and optothermal chemical catalysis. Applications of the laser heating of nanoparticles in laser nanomedicine are of particular interest. Significant emphasis is given to the proposed analytical approaches to modeling and calculating the heating processes under the action of a laser pulse on metal nanoparticles, taking into account the temperature dependences of the parameters. The proposed models can be used to estimate the parameters of lasers and nanoparticles in the various application fields for the laser heating of nanoparticles.
用激光辐射加热纳米粒子及其环境及其应用
本综述探讨了激光加热金属纳米粒子及其冷却过程中涉及的基本动态过程。尤其值得关注的是纳米粒子对激光能量的吸收、单个或整体纳米粒子的加热,以及纳米粒子与环境进行热交换所产生的能量耗散。目的是考虑纳米粒子和环境温度的相关性和数值、时间尺度以及描述这些过程的其他参数。讨论了激光脉冲加热单个金属纳米粒子的实验结果和分析研究,包括启动后续光热过程的激光阈值、温度如何影响光学特性以及激光脉冲加热金纳米粒子。还讨论了纳米粒子集合体加热的实验研究以及激光辐射加热纳米粒子集合体和环境的分析研究结果。考虑了激光加热下纳米粒子的纳米测温方法,包括金属折射率的变化和纳米粒子光学散射的光谱测温、拉曼光谱、纳米粒子加热环境折射率的热畸变,以及加热纳米粒子周围脂质双分子层的热化学相变。了解辐射吸收后的事件顺序及其时间尺度是纳米粒子许多应用的基础。本文综述了激光加热纳米粒子的应用领域,包括激光加热纳米粒子在环境中引发的热化学反应和选择性纳米光热解、纳米粒子的热辐射发射和激光诱导炽热、加热纳米粒子的电子和离子发射以及光热化学催化。激光加热纳米粒子在激光纳米医学中的应用尤其令人感兴趣。本研究重点关注在激光脉冲作用下金属纳米粒子加热过程的建模和计算分析方法,同时考虑到参数的温度依赖性。所提出的模型可用于估算激光和纳米粒子在激光加热纳米粒子的各种应用领域中的参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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