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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Understanding The Fascinating Origins of CO2 Adsorption and Dynamics in MOFs
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Understanding The Fascinating Origins of CO2 Adsorption and Dynamics in MOFs

机译:了解MOF中CO2吸附的迷人起源和动力学

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Metal organic frameworks (MOFs) have shown great promise for the adsorption and separation of gases, including the greenhouse gas CO2. In order to improve performance and realize practical applications for MOFs as CO2 adsorbents, a deeper understanding of the number and type of CO2 adsorption mechanisms must be unlocked, along with fine details of CO2 motion within MOFs. Using several complementary characterization methods is a promising protocol for comprehensively investigating the various host guest interactions between MOFs and CO2. In this work, a combination of solid state NMR (SSNMR) and single crystal X-ray diffraction (SCXRD) has been utilized to reveal both the location and dynamics of adsorbed CO2 within the related PbSDB and CdSDB MOFs, as well as to probe the role of metal centers in CO2 adsorption. C-13 SSNMR experiments targeting CO2 reveal the number of unique adsorption sites and the types of CO2 dynamics present, as well as their associated motional rates and angles. Cd-111 and Pb-207 SSNMR methods are used to probe the influence of CO2 adsorption on the MOF metal centers, and also to investigate the, possibility of any metal guest interactions. SCXRD experiments yield the exact locations and occupancies of adsorbed CO2 in both MOFs; by pairing this information with SSNMR data, a comprehensive model of CO2 adsorption and dynamics in PbSDB and CdSDB has been established. Both MOFs share a common adsorption site in the V-shaped "pi-pocket" formed by the phenyl rings of an individual V-shaped organic linker, while CdSDB also features an additional pi-pocket adsorption site arising from the phenyl rings of two linkers joined by Cd. SCXRD and SSNMR data indicate that CO2 adsorbed at the SDB-based it pocket in both MOFs exhibits a local rotation or "wobbling" at an individual adsorption site, as well as a nonlocalized jumping or "hopping" between symmetry-equivalent adsorption sites. The combined analysis of SCXRD and SSNMR data has the potential to yield rich information regarding guest dynamics, adsorption locations, and host guest interactions in many MOFs.
机译:金属有机骨架(MOF)在吸附和分离包括温室气体CO2在内的气体方面显示出了广阔的前景。为了提高MOF作为CO2吸附剂的性能并实现其实际应用,必须深入了解CO2吸附机理的数量和类型,以及MOF中CO2运动的精细细节。使用几种互补的表征方法是一种有前途的协议,可用于全面研究MOF和CO2之间的各种宿主来宾相互作用。在这项工作中,已利用固态NMR(SSNMR)和单晶X射线衍射(SCXRD)的组合来揭示相关PbSDB和CdSDB MOF中吸附的CO2的位置和动力学,并探测金属中心在CO2吸附中的作用。针对CO2的C-13 SSNMR实验揭示了独特的吸附位点的数量和存在的CO2动力学类型,以及它们相关的运动速率和角度。 Cd-111和Pb-207 SSNMR方法用于探测CO2吸附对MOF金属中心的影响,并研究任何金属客体相互作用的可能性。 SCXRD实验得出两个MOF中吸附的CO2的确切位置和占有率。通过将此信息与SSNMR数据配对,已建立了PbSDB和CdSDB中CO2吸附和动力学的综合模型。两个MOF在由单个V形有机连接基的苯环形成的V形“ pi-pocket”中共享一个共同的吸附位点,而CdSDB还具有两个连接基的苯环引起的额外的pi-pocket吸附位点。由CD加入。 SCXRD和SSNMR数据表明,在两个MOF中以SDB为基础的口袋中吸附的CO2在单个吸附位点均表现出局部旋转或“摆动”,以及在对称当量吸附位点之间出现非局部跳跃或“跳变”。 SCXRD和SSNMR数据的组合分析有可能在许多MOF中产生有关客体动力学,吸附位置和主体客体相互作用的丰富信息。

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