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基于锆夹心杂多钨酸盐构建具有环境高质子传导率的水稳定稀土有机框架。

Construction of Water-Stable Rare-Earth Organic Frameworks with Ambient High Proton Conductivity Based on Zirconium Sandwiched Heteropolytungstate.

作者信息

Fan Yan-Hua, Du Ming, Li Ya-Xin, Zhu Wen-Jie, Pang Jing-Yu, Bai Yan, Dang Dong-Bin

机构信息

Henan Key Laboratory of Polyoxometalate Chemistry, College of Chemistry and Chemical Engineering, Henan University, Kaifeng 475004, P.R. China.

出版信息

Inorg Chem. 2022 Sep 5;61(35):13829-13835. doi: 10.1021/acs.inorgchem.2c01664. Epub 2022 Aug 23.

Abstract

Water-stable proton-conducting materials owning excellent performances at ambient temperatures are currently one of the crucial challenges. Herein, four water-stable three-dimensional polyoxometalate-based rare-earth organic frameworks have been successfully synthesized and formulated as H{Ln(L)(HO)[Zr(OH)(PWO)]}·15HO (-) (Ln = La (), Ce (), Pr (); L = 3,5-pyridine dicarboxylic acid), which are the first examples of MOFs constructed by a zirconium sandwiched polyoxoanion. There are abundant coordinated water molecules functionalizing the Pr centers, and simultaneously, plenty of lattice water molecules are fitted into the channel of the framework. A continuous H-bonding network is found between the architectures and plays an important role in stabilizing the structure. Benefiting from the consecutive H-bonding networks, compounds - showed high proton conductivities at ambient temperature (up to 1.05 × 10 S·cm under 98% RH) by a synergistic effect of the combined components.

摘要

目前,在环境温度下具有优异性能的水稳定质子传导材料是关键挑战之一。在此,成功合成了四种水稳定的基于多金属氧酸盐的三维稀土有机框架,并将其化学式确定为H{Ln(L)(HO)[Zr(OH)(PWO)]}·15HO (-)(Ln = La (), Ce (), Pr (); L = 3,5-吡啶二甲酸),它们是由锆夹心多氧阴离子构建的金属有机框架的首个实例。有大量配位水分子使Pr中心功能化,同时,大量晶格水分子嵌入框架通道。在这些结构之间发现了连续的氢键网络,其在稳定结构方面起着重要作用。受益于连续的氢键网络,化合物 - 通过组合成分的协同效应在环境温度下表现出高质子传导率(在98%相对湿度下高达1.05×10 S·cm)。

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