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A Study on Reactive Spray Deposition Technology Processing Parameters in the Context of Pt Nanoparticle Formation

机译:Pt纳米粒子形成背景下反应喷雾沉积技术工艺参数的研究

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摘要

Catalytic materials are complex systems in which achieving the desired properties (i.e., activity, selectivity and stability) depends on exploiting the many degrees of freedom in surface and bulk composition, geometry, and defects. Flame aerosol synthesis is a process for producing nanoparticles with ample processing parameter space to tune the desired properties. Flame dynamics inside the reactor are determined by the input process variables such as solubility of precursor in the fuel; solvent boiling point; reactant flow rate and concentration; flow rates of air, fuel and the carrier gas; and the burner geometry. In this study, the processing parameters for reactive spray deposition technology, a flame-based synthesis method, are systematically evaluated to understand the residence times, reactant mixing, and temperature profiles of flames used in the synthesis of Pt nanoparticles. This provides a framework for further study and modeling. The flame temperature and length are also studied as a function of O-2 and fuel flow rates.
机译:催化材料是复杂的系统,其中要实现所需的性能(即活性,选择性和稳定性)取决于利用表面和本体组成,几何形状和缺陷的许多自由度。火焰气溶胶合成是一种用于生产具有足够加工参数空间以调节所需性能的纳米粒子的方法。反应堆内部的火焰动力学取决于输入的过程变量,例如前体在燃料中的溶解度;溶剂沸点反应物流速和浓度;空气,燃料和载气的流量;和燃烧器的几何形状。在这项研究中,系统地评估了反应喷涂沉积技术(一种基于火焰的合成方法)的工艺参数,以了解用于合成Pt纳米粒子的火焰的停留时间,反应物混合和温度曲线。这提供了进一步研究和建模的框架。还研究了火焰温度和火焰长度与O-2和燃料流量的关系。

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