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An experimental and computational study of CO2 adsorption in the sodalite-type M-BTT (M = Cr, Mn, Fe, Cu) metal–organic frameworks featuring open metal sites

机译:Co2型M-BTT(M = Cr,Mn,Fe,Cu)金属 - 有机框架中CO 2吸附的实验和计算研究,包括开放金属位点

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We present a comprehensive investigation of the CO _(2) adsorption properties of an isostructural series of metal–organic frameworks, M-BTT (M = Cr, Mn, Fe, Cu; BTT ~(3?) = 1,3,5-benzenetristetrazolate), which exhibit a high density of open metal sites capable of polarizing and binding guest molecules. Coupling gas adsorption measurements with in situ neutron and X-ray diffraction experiments provides molecular-level insight into the adsorption process and enables rationalization of the observed adsorption isotherms. In particular, structural data confirms that the high initial isosteric heats of CO _(2) adsorption for the series are directly correlated with the presence of open metal sites and further reveals the positions and orientations of as many as three additional adsorption sites. Density functional theory calculations that include van der Waals dispersion corrections quantitatively support the observed structural features associated with the primary and secondary CO _(2) binding sites, including CO _(2) positions and orientations, as well as the experimentally determined isosteric heats of CO _(2) adsorption.
机译:我们对金属有机骨架的ISOStrontuck ressworks的CO _(2)吸附性能进行了全面的研究,M-BTT(M = Cr,Mn,Fe,Cu; BTT〜(3?)= 1,3,5 - 生物四分体),其表现出高密度的开放金属位点,能够偏振和结合客体分子。用原位中子和X射线衍射实验的耦合气体吸附测量为吸附过程提供分子水平洞察,并实现了观察到的吸附等温线的合理化。特别地,结构数据证实,该系列的CO _(2)的吸附的高初始基位热量与开放金属位点的存在直接相关,进一步揭示了多达三种附加吸附位点的位置和取向。密度泛函理论计算包括范德华色散校正定量支持与初级和次级CO _(2)结合位点相关的观察到的结构特征,包括CO _(2)位置和方向,以及实验确定的替代CO _(2)吸附。

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