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高效 MOF 质子导体中的独特质子动力学。

Unique Proton Dynamics in an Efficient MOF-Based Proton Conductor.

机构信息

College of Chemistry and Molecular Engineering, Zhengzhou University , Zhengzhou 450001, China.

Department of Chemistry and Center of Novel Functional Molecules, The Chinese University of Hong Kong , Shatin, New Territories, Hong Kong SAR, China.

出版信息

J Am Chem Soc. 2017 Mar 8;139(9):3505-3512. doi: 10.1021/jacs.6b12847. Epub 2017 Feb 24.

Abstract

Recently, research on metal-organic frameworks (MOFs) serving as a new type of proton conductive material has resulted in many exciting achievements. However, direct observation of a well-established proton-transfer mechanism still remains challenging in MOFs and other crystalline compounds, let alone other conductive materials. Herein we report the solvothermal synthesis of a new proton-conducting MOF, (MeNH)[Eu(L)] (HL = 5-(phosphonomethyl)isophthalic acid). The compound consists of a layered anionic framework [Eu(L)] and interlayer-embedded counter cations (MeNH), which interact with adjacent uncoordinated O atoms of phosphonate groups to form strongly (N-H···O) hydrogen-bonded chains aligned parallel to the c-axis. Facile proton transfer along these chains endows the compound with single-crystal anhydrous conductivity of 1.25 × 10 S·cm at 150 °C, and water-assisted proton conductivity for a compacted pellet of microcrystalline crystals attains 3.76 × 10 S·cm at 100 °C and 98% relative humidity (RH). Proton dynamics (vibrating and transfer) within N-H···O chains of the compound are directly observed using a combination of anisotropic conductivity measurements and control experiments using large single-crystals and pelletized samples, in situ variable-temperature characterization techniques including powder X-ray diffraction (PXRD), single-crystal X-ray diffraction (SCXRD), diffuse reflectance infrared Fourier transform spectrum (DRIFTS), and variable-temperature photoluminescence. In particular, a scarce single-crystal to single-crystal (SCSC) transformation accompanied by proton transfer between an anionic structure (MeNH)[Eu(L)] and an identical neutral framework [Eu(HL)] has been identified.

摘要

最近,人们对金属-有机骨架(MOFs)作为一种新型质子传导材料的研究取得了许多令人兴奋的成果。然而,在 MOFs 和其他结晶化合物中,直接观察到完善的质子传递机制仍然具有挑战性,更不用说其他导电材料了。在此,我们报告了一种新型质子传导 MOF(MeNH)[Eu(L)](HL=5-(膦酸甲酯)异苯二甲酸)的溶剂热合成。该化合物由层状阴离子骨架[Eu(L)]和层间嵌入的抗衡阳离子(MeNH)组成,它们与相邻未配位的膦酸基团的 O 原子相互作用,形成与 c 轴平行排列的强(N-H···O)氢键链。这些链上的质子易于转移,使该化合物在 150°C 时具有单晶无水电导率为 1.25×10 S·cm,在 100°C 和 98%相对湿度(RH)下,压实微晶晶体的水辅助质子电导率可达 3.76×10 S·cm。使用各向异性电导率测量和大单晶和压片样品的对照实验、原位变温特性包括粉末 X 射线衍射(PXRD)、单晶 X 射线衍射(SCXRD)、漫反射红外傅里叶变换光谱(DRIFTS)和变温光致发光的组合,直接观察到化合物中 N-H···O 链内的质子动力学(振动和转移)。特别是,已经确定了一种罕见的单晶到单晶(SCSC)转变,伴随着阴离子结构(MeNH)[Eu(L)]和相同的中性骨架[Eu(HL)]之间的质子转移。

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