Peñuñuri-Miranda Omar, Olivas-Martinez Miguel, Ibarra-Espinoza José Alberto, Rodríguez-Córdova Rosalva Josefina, Hernández-Giottonini Karol Yesenia, Fernández-Quiroz Daniel, Zavala-Rivera Paul, Lucero-Acuña Armando
Department of Chemical and Metallurgical Engineering, University of Sonora, Hermosillo 83000, Mexico.
Nanotechnology Graduate Program, Department of Physics, University of Sonora, Hermosillo 83000, Mexico.
Polymers (Basel). 2022 Aug 2;14(15):3151. doi: 10.3390/polym14153151.
The spatiotemporal temperature distributions of NIR irradiated polypyrrole nanoparticles (PPN) were evaluated by varying PPN concentrations and the pH of suspensions. The PPN were synthesized by oxidative chemical polymerization, resulting in a hydrodynamic diameter of 98 ± 2 nm, which is maintained in the pH range of 4.2-10; while the zeta potential is significantly affected, decreasing from 20 ± 2 mV to -5 ± 1 mV at the same pH range. The temperature profiles of PPN suspensions were obtained using a NIR laser beam (1.5 W centered at 808 nm). These results were analyzed with a three-dimensional predictive unsteady-state heat transfer model that considers heat conduction, photothermal heating from laser irradiation, and heat generation due to the water absorption. The temperature profiles of PPN under laser irradiation are concentration-dependent, while the pH increase only induces a slight reduction in the temperature profiles. The model predicts a value of photothermal transduction efficiency (η) of 0.68 for the PPN. Furthermore, a linear dependency was found for the overall heat transfer coefficient (U) and η with the suspension temperature and pH, respectively. Finally, the model developed in this work could help identify the exposure time and concentration doses for different tissues and cells (pH-dependent) in photothermal applications.
通过改变聚吡咯纳米颗粒(PPN)的浓度和悬浮液的pH值,评估了近红外(NIR)照射下PPN的时空温度分布。PPN通过氧化化学聚合合成,其流体动力学直径为98±2 nm,在4.2-10的pH范围内保持不变;而zeta电位受到显著影响,在相同pH范围内从20±2 mV降至-5±1 mV。使用近红外激光束(1.5 W,中心波长808 nm)获得PPN悬浮液的温度分布。这些结果用三维预测非稳态传热模型进行分析,该模型考虑了热传导、激光照射产生的光热加热以及水吸收产生的热量。激光照射下PPN的温度分布与浓度有关,而pH值升高仅导致温度分布略有降低。该模型预测PPN的光热转换效率(η)值为0.68。此外,分别发现总传热系数(U)和η与悬浮液温度和pH值呈线性关系。最后,本研究中开发的模型有助于确定光热应用中不同组织和细胞(取决于pH值)的暴露时间和浓度剂量。