Photothermal properties of Fe3O4 nanoparticles coated with turmeric extract

Margarita Alvarado, A. E. Matías Reyes, A. Cruz-Orea, J. Santoyo-Salazar, F. A. Domínguez-Pacheco, C. Hernández-Aguilar, A. A. Duran-Ledezma
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Abstract

In this study, we synthesized magnetite nanoparticles through a modified coprecipitation route and subsequently coated them directly with Curcuma longa extract. The resulting nanoparticles were then dispersed in distilled water to create a nanofluid. The particle size distribution ranged between 9 to 18 nm according to Transmission Electron Microscopy and Dynamic Light Scattering. The nanofluid’s thermal parameters were obtained by photothermal techniques, obtaining their thermal diffusivity, effusivity, conductivity, and heat capacity per unit volume. The Thermal Wave Resonator Cavity was employed to measure the thermal diffusivity, while the Inverse Photopyroelectric photothermal technique was used to determine the effusivity value. The obtained thermal parameters were close to the carrier liquid (distilled water), being a preliminary study that can be analyzed to improve the heat transfer application in other suspension fluids.
涂有姜黄提取物的 Fe3O4 纳米粒子的光热特性
在这项研究中,我们通过改良的共沉淀方法合成了磁铁矿纳米粒子,随后将其直接涂覆在莪术提取物上。然后将得到的纳米粒子分散在蒸馏水中,形成纳米流体。根据透射电子显微镜和动态光散射法,粒度分布在 9 到 18 纳米之间。纳米流体的热参数是通过光热技术获得的,包括热扩散率、流出率、电导率和单位体积热容量。热波谐振腔用于测量热扩散率,而反向光电光热技术则用于确定流出率值。获得的热参数与载液(蒸馏水)接近,这是一项初步研究,可用于分析以改进在其他悬浮液中的传热应用。
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