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Optical Heating and Temperature Determination of Core-Shell Gold Nanoparticles and Single-Walled Carbon Nanotube Microparticles

机译:核壳金纳米粒子和单壁碳纳米管微粒的光学加热和温度测定

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摘要

The real-time temperature measurement of nanostructured materials is particularly attractive in view of increasing needs of local temperature probing with high sensitivity and resolution in nanoelectronics, integrated photonics, and biomedicine. Light-induced heating and Raman scattering of single-walled carbon nanotubes with adsorbed gold nanoparticles decorating silica microparticles are reported, by both green and near IR lasers. The plasmonic shell is used as nanoheater, while the single-walled carbon nanotubes are Raman active and serve as a thermometer. Stokes and Anti-Stokes Raman spectra of single-walled carbon nanotubes serve to estimate the effective light-induced temperature rise on the metal nanoparticles. The temperature rise is constant with time, indicating stability of the adsorption density. The effective temperatures derived from Stokes and Anti-Stokes intensities are correlated with those measured in a heating stage. The resolution of the thermal experiments in our study was found to be 5-40 K.
机译:纳米结构材料的实时温度测量尤其吸引人,鉴于纳米电子,集成光子和生物医学中具有高灵敏度和分辨率的局部温度探测的需求,尤其吸引。通过绿色和近红外红外激光,报道了具有吸附金纳米颗粒的单壁碳纳米管的光诱导的加热和拉曼散射。等离子体壳用作纳米特器,而单壁碳纳米管是拉曼的,用作温度计。单壁碳纳米管的斯托克斯和反斯托克斯拉曼光谱用于估计金属纳米颗粒上的有效光诱导的温度升高。随着时间的推移,温度上升是恒定的,表明吸附密度的稳定性。衍生自斯托克斯和抗Stokes强度的有效温度与在加热阶段中测量的那些相关。发现我们研究中的热实验的分辨率为5-40k。

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