论文标题
在碳氢化合物吸附时,在基于CU的金属有机框架中,客人引起的结构变形
Guest-induced structural deformation in Cu-based Metal-Organic Framework upon hydrocarbon adsorption
论文作者
论文摘要
在一个占捕获和分离过程的世界中,占全球能源消耗的10%以上,新型的多孔材料,例如基于吸附的过程中使用的金属有机框架(MOF),是剥夺高能蒸馏蒸馏的有希望的替代方法。形状和尺寸量身定制的毛孔与路易斯酸性位点结合使用可以增强吸附物吸附剂的相互作用。了解吸附的潜在机制对于设计和优化捕获和分离过程至关重要。本文中,我们分析了两个基于铜的MOF,Cu-Mof-74和urjc-1中光烃(甲烷,乙烷,乙烯,丙烯和丙烯)的吸附行为。实验和计算吸附曲线揭示了裸露的金属中心对烯烃的影响有限。较低的相互作用Cu-烯烃也反映在被计算出的吸附和结合几何形状的焓中。此外,在URJC-1中首先报道了钻石形孔的变形。这种现象被强调为了解吸附剂在未来的工业应用中的响应机制和潜力的关键。
In a world where capture and separation processes represent above 10% of global energy consumption, novel porous materials, such as Metal-Organic Frameworks (MOFs) used in adsorption-based processes are a promising alternative to dethrone the high-energy-demanding distillation. Shape and size tailor-made pores in combination with Lewis acidic sites can enhance the adsorbate-adsorbent interactions. Understanding the underlying mechanisms of adsorption is essential to designing and optimizing capture and separation processes. Herein, we analyze the adsorption behaviour of light hydrocarbons (methane, ethane, ethylene, propane, and propylene) in two synthesized copper-based MOFs, Cu-MOF-74 and URJC-1. The experimental and computational adsorption curves reveal a limited effect of the exposed metal centers on the olefins. The lower interaction Cu-olefin is also reflected in the calculated enthalpy of adsorption and binding geometries. Moreover, the diamond-shaped pores' deformation upon external stimuli is first reported in URJC-1. This phenomenon is highlighted as the key to understanding the adsorbent's responsive mechanisms and potential in future industrial applications.