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基于卟啉基膦酸盐的金属有机框架中质子传导率与金属中心的函数关系。

Proton conductivity as a function of the metal center in porphyrinylphosphonate-based MOFs.

作者信息

Enakieva Yulia Yu, Zhigileva Ekaterina A, Fitch Andrew N, Chernyshev Vladimir V, Stenina Irina A, Yaroslavtsev Andrey B, Sinelshchikova Anna A, Kovalenko Konstantin A, Gorbunova Yulia G, Tsivadze Aslan Yu

机构信息

Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, Leninsky prosp. 31/4, Moscow, 119071, Russian Federation.

Department of Chemistry, Lomonosov Moscow State University, Leninskie Gory, 1-3, Moscow, 119991, Russian Federation.

出版信息

Dalton Trans. 2021 May 18;50(19):6549-6560. doi: 10.1039/d1dt00612f.

DOI:10.1039/d1dt00612f
PMID:33890610
Abstract

The rational design of metal-organic frameworks (MOFs) is highly important for the development of new proton conductors. Porphyrinylphosphonate-based MOFs, providing the directed tuning of physical and chemical properties of materials through the modification of a macrocycle, are potentially high-conducting systems. In this work the synthesis and characterization of novel anionic Zn-containing MOF based on palladium(ii) meso-tetrakis(3-(phosphonatophenyl))porphyrinate, IPCE-2Pd, are reported. Moreover, the proton-conductive properties and structures of two anionic Zn-containing MOFs based on previously described nickel(ii) and novel palladium(ii) porphyrinylphosphonates, IPCE-2M (M = Ni(ii) or Pd(ii)), are compared in details. The high proton conductivity of 1.0 × 10-2 S cm-1 at 75 °C and 95% relative humidity (RH) is revealed for IPCE-2Ni, while IPCE-2Pd exhibits higher hydrolytic and thermal stability of the material (up to 420 °C) simultaneously maintaining a comparable value of conductivity (8.11 × 10-3 S cm-1 at 95 °C and 95% RH). The nature of the porphyrin metal center is responsible for the features of crystal structure of materials, obtained under identical reaction conditions. The structures of IPCE-2Pd and its dehydrated derivative IPCE-2Pd-HT are determined from the synchrotron powder diffraction data. The presence of phosphonic groups in compared materials IPCE-2M affords a high concentration of proton carriers that together with the sorption of water molecules leads to a high proton conductivity.

摘要

金属有机框架材料(MOFs)的合理设计对于新型质子导体的开发至关重要。基于卟啉膦酸盐的MOFs能够通过大环修饰对材料的物理和化学性质进行定向调节,是潜在的高导电体系。本文报道了基于钯(II)中四(3-(膦酸苯酯基))卟啉的新型含锌阴离子MOF(IPCE-2Pd)的合成与表征。此外,还详细比较了两种基于先前描述的镍(II)和新型钯(II)卟啉膦酸盐的含锌阴离子MOF(IPCE-2M,M = Ni(II)或Pd(II))的质子传导性能和结构。IPCE-2Ni在75°C和95%相对湿度(RH)下显示出1.0×10-2 S cm-1的高质子传导率,而IPCE-2Pd同时表现出更高的材料水解稳定性和热稳定性(高达420°C),并在95°C和95%RH下保持相当的电导率值(8.11×10-3 S cm-1)。在相同反应条件下获得的材料晶体结构特征由卟啉金属中心的性质决定。通过同步辐射粉末衍射数据确定了IPCE-2Pd及其脱水衍生物IPCE-2Pd-HT 的结构。在比较的材料IPCE-2M中,膦酸基团的存在提供了高浓度的质子载体,这与水分子的吸附一起导致了高质子传导率。

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