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Rational Design of Morphological Characteristics to Determine the Optimal Hierarchical Nanostructures in Heterogeneous Catalysis

机译:形态学特性的理性设计,以确定异构催化的最佳分层纳米结构

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This work draws attention to the optimal hierarchical nanostructure morphology and the morphological characteristics that lead to a rational design of heterogeneous nanocatalysts, especially for reactions that exhibit sluggish kinetics. A simplified methanol oxidation on two types of hierarchical nanostructures, external and internal, is reported. A complex system of asymmetric geometries was simplified by mapping 3D geometries into 2D models by using a mass transport approach. The macropore size was the most comprehensive characteristic to evaluate the specific activity and current density of hierarchical nanostructures. The optimal current densities for both types of nanostructures were achieved in macropore size ranges of 3.2-4.5 and 1.9-3.2 mm, respectively. The optimal mass activity of the internal nanostructures was achieved in the porosity range of 40-50%, whereas that of the external hierarchical nanostructures was achieved at high porosity values. In comparison to internal hierarchical nanostructures, external hierarchical nanostructures tend to be cost-effective catalysts that have a high catalytic activity.
机译:这项工作引起了最佳的等级纳米结构形态和导致异质纳米催化剂理性设计的形态特征,特别是对于表现出低迷的动力学的反应。报道了两种类型的分层纳米结构,外部和内部的简化甲醇氧化。通过使用大规模运输方法将3D几何形式映射到2D模型中,简化了一种复杂的不对称几何形状系统。大孔尺寸是评估分层纳米结构的特定活动和电流密度最全面的特征。两种类型纳米结构的最佳电流密度分别在巨大尺寸范围为3.2-4.5和1.9-3.2mm。内部纳米结构的最佳质量活性在40-50%的孔隙率范围内实现,而在高孔隙率值下达到外部分层纳米结构的含量。与内部分层纳米结构相比,外部分层纳米结构往往是具有高催化活性的成本效率的催化剂。

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