论文标题
等离子辅助光催化中温度分布的参数研究
Parametric study of temperature distribution in plasmon-assisted photocatalysis
论文作者
论文摘要
最近,对血浆纳米颗粒的MM尺度复合材料的使用越来越感兴趣,以提高化学反应速率。该作用最近显示出与照明引起的温度升高有关。在这里,我们研究了这些样品中温度分布的参数依赖性,并为简单情况提供了分析表达式。我们表明,由于这些系统通常被设计为吸收所有传入的光,因此它们中的温度分布弱地依赖于照明频谱,脉冲持续时间,颗粒形状,大小和密度。因此,这些参数的变化在最多适度的定量变化中产生。我们还表明,温度分布线性取决于梁半径和宿主的导热率。最后,我们研究了反应速率对这些参数的敏感性,这是激活能量的函数,并解释了先前的各种实验报告。这些结果将简化基于发热的光收集基于光收集的其他能源相关应用的优化。
Recently, there has been a growing interest in the usage of mm-scale composites of plasmonic nanoparticles for enhancing the rates of chemical reactions; the effect was shown recently to be predominantly associated with the elevated temperature caused by illumination. Here, we study the parametric dependence of the temperature distribution in these samples, and provide analytic expressions for simple cases. We show that since these systems are usually designed to absorb all the incoming light, the temperature distribution in them is weakly-dependent on the illumination spectrum, pulse duration, particle shape, size and density. Thus, changes in these parameters yield at most modest quantitative changes. We also show that the temperature distribution is linearly dependent on the beam radius and the thermal conductivity of the host. Finally, we study the sensitivity of the reaction rate to these parameters as a function of the activation energy and interpret various previous experimental reports. These results would simplify the optimization of photocatalysis experiments, as well as for other energy-related applications based on light harvesting for heat generation.