Ortiz Aurélie U, Freitas Alexy P, Boutin Anne, Fuchs Alain H, Coudert François-Xavier
Institut de Recherche de Chimie Paris, CNRS - Chimie ParisTech, 11 rue Pierre et Marie Curie, 75005 Paris, France.
Phys Chem Chem Phys. 2014 Jun 7;16(21):9940-9. doi: 10.1039/c3cp54292k. Epub 2014 Jan 21.
We demonstrate, by means of Grand Canonical Monte Carlo simulation on different members of the ZIF family, how topology, geometry, and linker functionalization drastically affect the water adsorption properties of these materials, tweaking the ZIF materials from hydrophobic to hydrophilic. We show that adequate functionalization of the linkers allows one to tune the host-guest interactions, even featuring dual amphiphilic materials whose pore space features both hydrophobic and hydrophilic regions. Starting from an initially hydrophobic material (ZIF-8), various degrees of hydrophilicity could be obtained, with a gradual evolution from a type V adsorption isotherm in the liquid phase to a type I isotherm in the gas phase. This behavior is similar to what was described earlier in families of hydrophobic all-silica zeolites, with hydrophilic "defects" of various strength, such as silanol nests or the presence of extra-framework cations.
我们通过对ZIF家族不同成员进行巨正则蒙特卡罗模拟,展示了拓扑结构、几何形状和连接体功能化如何显著影响这些材料的水吸附特性,将ZIF材料从疏水性调整为亲水性。我们表明,连接体的适当功能化能够调节主客体相互作用,甚至产生具有双亲性的材料,其孔隙空间同时具有疏水和亲水区域。从最初的疏水材料(ZIF-8)出发,可以获得不同程度的亲水性,液相中从V型吸附等温线逐渐演变为气相中的I型等温线。这种行为与之前在疏水性全硅沸石家族中所描述的类似,具有不同强度的亲水性“缺陷”,如硅醇巢或骨架外阳离子的存在。