Hatakeyama Genki, Zhou Hongyao, Kikuchi Takashi, Nishio Masaki, Oka Kouki, Sadakiyo Masaaki, Nishiyama Yusuke, Yamada Teppei
Division of Chemistry, Graduate School of Science, The University of Tokyo 7-3-1 Hongo Bunkyo-ku Tokyo 113-0033 Japan
Rigaku Corporation 3-9-12 Matsubaracho Akishima Tokyo 196-8666 Japan.
Chem Sci. 2023 Aug 1;14(34):9068-9073. doi: 10.1039/d3sc02743k. eCollection 2023 Aug 30.
Metal-organic frameworks (MOFs) are potential candidates for the platform of the solid acid; however, no MOF has been reported that has both aqueous ammonium stability and a strong acid site. This manuscript reports a highly stable MOF with a cation exchange site synthesized by the reaction between zirconium and mellitic acid under a high concentration of ammonium cations (NH). Single-crystal XRD analysis of the MOF revealed the presence of four free carboxyl groups of the mellitic acid ligand, and the high first association constant (p) of one of the carboxyl groups acts as a monovalent ion-exchanging site. NH in the MOF can be reversibly exchanged with proton (H), sodium (Na), and potassium (K) cations in an aqueous solution. Moreover, the uniform nanospace of the MOF provides the acid site for selective NH recovery from the aqueous mixture of NH and Na, which could solve the global nitrogen cycle problem. The solid acid nature of the MOF also results in the proton conductivity reaching 1.34 × 10 S cm at 55 °C by ion exchange from NH to H.
金属有机框架材料(MOFs)是固体酸平台的潜在候选材料;然而,尚未有兼具水相中铵稳定性和强酸位点的MOF被报道。本论文报道了一种通过锆与均苯四甲酸在高浓度铵阳离子(NH)存在下反应合成的具有阳离子交换位点的高度稳定的MOF。对该MOF的单晶X射线衍射分析表明,均苯四甲酸配体存在四个游离羧基,其中一个羧基的高一级缔合常数(p)充当单价离子交换位点。MOF中的NH可以与水溶液中的质子(H)、钠(Na)和钾(K)阳离子进行可逆交换。此外,MOF均匀的纳米空间为从NH和Na的水性混合物中选择性回收NH提供了酸性位点,这有助于解决全球氮循环问题。MOF的固体酸性质还通过从NH到H的离子交换使质子传导率在55°C时达到1.34×10 S cm。