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首页> 外文期刊>ACS applied materials & interfaces >Intrinsic Thermal Management Capabilities of Flexible Metal-Organic Frameworks for Carbon Dioxide Separation and Capture
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Intrinsic Thermal Management Capabilities of Flexible Metal-Organic Frameworks for Carbon Dioxide Separation and Capture

机译:用于二氧化碳分离和捕获的柔性金属 - 有机框架的内在热管理能力

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摘要

We show that flexible metal organic frameworks (MOFs) exhibiting "gate openings/closings" for CO2 can intrinsically suppress the exothermic heat released by adsorption and the endothermic heat gained by desorption, both of which reduce the working capacity of CO2 in a separation process under near-adiabatic conditions. We use the elastic layer-structured metal organic framework-11 (ELM-11) [Cu(4,4'-bipyridine)(2)(BF4)(2)], which exhibits a two-step gate-adsorption isotherm, as a model system for flexible MOFs, and perform free energy analyses with the aid of grand canonical Monte Carlo simulations for ELM-11 structures that were determined by the Rietveld method using in situ synchrotron X-ray powder diffraction data. We demonstrate that the thermal management capabilities of ELM-11 showing the two-step gating for CO2 at lower and higher pressures are nearly identical and quite effective (41% and 44% at 298 K, respectively). Moreover, we show that ELM-11 has an extremely high CO2 selectivity for both CO2/N-2 and CO2/CH4 mixtures at 298 K that, in addition to the intrinsic thermal management capability, is a crucial factor for application to carbon capture and storage (CCS). The multigate closing pressures of ELM-11 are not necessarily matched to the operating pressures used in CCS; however, our findings, and perspectives based on free energy analyses regarding modification of the host framework structure to tune the gating pressure, suggest that flexible MOFs exhibiting multigate openings/closings are promising materials for further development into systems with intrinsic thermal management mechanisms for CCS applications.
机译:我们表明,用于CO2的柔性金属有机框架(MOF),用于CO2的“闸门开口/闭合”可以本质上抑制通过吸附和通过解吸获得的吸热热释放的放热热,这两者都可以降低在分离过程中CO2的工作能力近绝热条件。我们使用弹性层结构化金属有机框架-11(ELM-11)[Cu(4,4'-Bi0吡啶)(2)(2)(BF4)(2)],其呈现两步栅极吸附等温线,如柔性MOF的模型系统,借助于榆树-11结构的大规范蒙特卡罗模拟进行自由能量分析,该榆木-11结构是由RIETVELD方法使用原位同步的方法确定的,使用原位同步方法确定。我们证明ELM-11的热管理能力显示在较低且较高的压力下的两步栅极的两步浇注几乎相同,并且分别在298k下为41%和44%)。此外,我们表明ELM-11在298K处具有极高的CO 2 / N-2和CO2 / CH 4混合物的CO 2选择性,除了内在的热管理能力之外,还是应用于碳捕获和碳捕获的关键因素存储(CCS)。 ELM-11的多格闭合压力不一定与CCS中使用的操作压力相匹配;然而,我们的研究结果和基于自由能量分析关于主机框架结构的修改来调整门控压力,表明,展示综合开口/闭合的柔性MOF是具有CCS应用的内在热管理机制的系统进一步发展的材料。

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