Afrin Unjila, Mian Mohammad Rasel, Otake Ken-Ichi, Drout Riki J, Redfern Louis R, Horike Satoshi, Islamoglu Timur, Farha Omar K
Institute for Integrated Cell-Material Sciences (iCeMS), Kyoto University Institute for Advanced Study (KUIAS), Kyoto University, Yoshida Ushinomiya-cho, Sakyo-ku, Kyoto 606-8501, Japan.
Inorg Chem. 2021 Jan 18;60(2):1086-1091. doi: 10.1021/acs.inorgchem.0c03206. Epub 2021 Jan 7.
Metal-organic frameworks (MOFs) are promising candidates for proton-conducting applications. Herein, we report the aqueous synthesis of two new phosphonate-based MOFs comprising glyphosate linkers, [Mg(dpmp)]·2HO (Mg-NU-225) and [Fe(dpmp)]·2HO (Fe-NU-225), (dpmp = ,'-diphosphonomethyl-2,5-piperazinedione), and explore their proton conductivities. Single crystal X-ray diffraction measurements revealed that both frameworks display a two-dimensional layered structure with a cyclic ring ligand which forms from the condensation of two glyphosate molecules. Under humid conditions and over a wide temperature range, water molecules are trapped between adjacent layers and facilitate rapid proton conduction. Mg-NU-225 and Fe-NU-225 recorded proton conductivities of 1.5 × 10 and 1.7 × 10 S cm, respectively, along the plane direction and 1.6 × 10 and 9.1 × 10 S cm perpendicular to the plane direction at 55 °C and 95% relative humidity, as confirmed by two-contact probe impedance methods. The mechanism of proton transport was found to be that of the Grotthuss model from the low activation energy for proton hopping.
金属有机框架材料(MOFs)是质子传导应用领域中很有前景的候选材料。在此,我们报告了两种包含草甘膦连接体的新型膦酸酯基MOFs的水相合成,即[Mg(dpmp)]·2H₂O(Mg-NU-225)和[Fe(dpmp)]·2H₂O(Fe-NU-225),(dpmp = ,'-二膦酰甲基-2,5-哌嗪二酮),并探究了它们的质子传导率。单晶X射线衍射测量表明,这两种框架都呈现出二维层状结构,带有一个由两个草甘膦分子缩合形成的环状配体。在潮湿条件下且在较宽温度范围内,水分子被困在相邻层之间,促进了快速的质子传导。通过双接触探针阻抗法证实,在55℃和95%相对湿度下,Mg-NU-225和Fe-NU-225沿平面方向的质子传导率分别为1.5×10⁻⁵和1.7×10⁻⁵ S cm⁻¹,垂直于平面方向的质子传导率分别为1.6×10⁻⁶和9.1×10⁻⁶ S cm⁻¹。从质子跳跃的低活化能发现质子传输机制符合Grotthuss模型。