HYBRID ORGANIC–INORGANIC ASSEMBLIES BASED ON COORDINATION METAL–LIGAND FRAGMENTS: SYNTHESIS, PROPERTIES, APPLICATION IN CHROMATOGRAPHY

O. E. Martsynko, K. K. Tsymbalyuk
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Abstract

The data on the synthetic methods of metal-organic frameworks (MOF) based on the coordination compounds of metals, including germanium, with the polydentate aromatic acids, their properties and applications are systemised in the paper. The prospect of using such types of MOFs to determine the highly toxic organic pollutants such as polycyclic aromatic hydrocarbons (PAHs) has been identified. Due to their unique properties, including large surface area, uniformly structured nanoscale cavities, tunable pore sizes and thermal stability MOFs are promising materials for use in analytical chemistry. They have been used in air sampling, as a stationary phase in chromatography, and as sorbents for solid-phase extraction, solid-phase microextraction, and magnetic solid-phase extraction. Depending on the structure of the ligands, MOFs can provide molecular recognition through different types of interactions of a wide range of compounds, such as polycyclic aromatic hydrocarbons (PAHs), polychlorinated biphenyls (PCBs), pyrethroids, nitrosamines and parabens, that are immunosuppressors, endocrine disruptors and cancerogenic compounds. For example, MOFs adsorb hydrophobic organic compounds (e.g., PAHs, PCBs) due to π-π stacking and hydrophobic interactions with organic linkers. Whereas the extraction of organic compounds with hydrophilic groups (for example, nitrosamines) occurs due to electrostatic interaction and hydrogen bonds. The most effective methods of synthesis of the considered type MOF are hydro(solvo)thermal synthesis and mechanochemical methods modified by adding a small amount of solvents. The slow diffusion methods are advisable to use to obtain crystals suitable for single-crystal X-ray diffraction.
基于配位金属-配体片段的有机-无机杂化组合物:合成、性质及其在色谱中的应用
本文系统介绍了以锗等金属与多齿芳香酸配位化合物为基础的金属有机骨架(MOF)的合成方法、性能和应用。利用这类MOFs检测高毒性有机污染物如多环芳烃(PAHs)的前景已被确定。由于其独特的性质,包括大表面积,均匀结构的纳米级空腔,可调节的孔径和热稳定性,mof是分析化学中有前途的材料。它们已被用于空气取样,作为色谱中的固定相,作为固相萃取,固相微萃取和磁固相萃取的吸附剂。根据配体的结构,mof可以通过多种化合物的不同类型的相互作用提供分子识别,如多环芳烃(PAHs)、多氯联苯(PCBs)、拟除虫菊酯、亚硝胺和对羟基苯甲酸酯,这些化合物是免疫抑制剂、内分泌干扰物和致癌化合物。例如,由于π-π堆叠和与有机连接剂的疏水相互作用,MOFs吸附疏水有机化合物(如多环芳烃,多氯联苯)。而具有亲水性基团的有机化合物(例如亚硝胺)的提取是由于静电相互作用和氢键而发生的。合成该类型MOF最有效的方法是氢(溶剂)热合成和加入少量溶剂修饰的机械化学方法。建议采用慢扩散法获得适合单晶x射线衍射的晶体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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