Rabe Timo, Svensson Grape Erik, Engesser Tobias A, Inge A Ken, Ströh Jonas, Kohlmeyer-Yilmaz Gitta, Wahiduzzaman Mohammad, Maurin Guillaume, Sönnichsen Frank D, Stock Norbert
Department of Inorganic Chemistry, Christian-Albrechts-Universität zu Kiel, 24118, Kiel, Germany.
Department of Materials and Environmental Chemistry, Stockholm University, 10691, Stockholm, Sweden.
Chemistry. 2021 May 17;27(28):7696-7703. doi: 10.1002/chem.202100373. Epub 2021 Mar 10.
The reaction of the V-shaped linker molecule 5-hydroxyisophthalic acid (H L ), with Al or Ga nitrate under almost identical reaction conditions leads to the nitration of the linker and subsequent formation of metal-organic frameworks (MOFs) with CAU-10 or MIL-53 type structure of composition [Al(OH)(L)], denoted as Al-CAU-10-L or [Ga(OH)(L)], denoted as Ga-MIL-53-L . The Al-MOF contains the original linker L as well as three different nitration products (L , L and L ), whereas the Ga-MOF mainly incorporates the linker L . The compositions were deduced by H NMR spectroscopy and confirmed by Rietveld refinement. In situ and ex situ studies were carried out to follow the nitration and crystallization, as well as the composition of the MOFs. The crystal structures were refined against powder X-ray diffraction (PXRD) data. As anticipated, the use of the V-shaped linker results in the formation of the CAU-10 type structure in the Al-MOF. Unexpectedly, the Ga-MOF crystallizes in a MIL-53 type structure, which is usually observed with linear or slightly bent linker molecules. To study the structure directing effect of the in situ nitrated linker, pure 2-nitrobenzene-1,3-dicarboxylic acid (m-H BDC-NO ) was employed which exclusively led to the formation of [Ga(OH)(C H NO )] (Ga-MIL-53-m-BDC-NO ), which is isoreticular to Ga-MIL-53-L . Density Functional Theory (DFT) calculations confirmed the higher stability of Ga-MIL-53-L compared to Ga-CAU-10-L and grand canonical Monte Carlo simulations (GCMC) are in agreement with the observed water adsorption isotherms of Ga-MIL-53-L .
在几乎相同的反应条件下,V形连接分子5-羟基间苯二甲酸(HL)与硝酸铝或硝酸镓反应,导致连接体发生硝化反应,随后形成具有CAU-10或MIL-53型结构的金属有机框架(MOF),其组成分别为[Al(OH)(L)],记为Al-CAU-10-L,或[Ga(OH)(L)],记为Ga-MIL-53-L。铝基MOF包含原始连接体L以及三种不同的硝化产物(L、L和L),而镓基MOF主要包含连接体L。通过1H NMR光谱推断其组成,并通过Rietveld精修得到证实。进行了原位和非原位研究,以跟踪硝化和结晶过程以及MOF的组成。根据粉末X射线衍射(PXRD)数据对晶体结构进行了精修。正如预期的那样,V形连接体的使用导致铝基MOF中形成CAU-10型结构。出乎意料的是,镓基MOF结晶为MIL-53型结构,这种结构通常在直链或微弯的连接体分子中观察到。为了研究原位硝化连接体的结构导向作用,使用了纯的2-硝基苯-1,3-二羧酸(间-H2BDC-NO2),其仅导致[Ga(OH)(C6H3NO4)](Ga-MIL-53-间-BDC-NO2)的形成,该结构与Ga-MIL-53-L同构。密度泛函理论(DFT)计算证实了Ga-MIL-53-L比Ga-CAU-10-L具有更高的稳定性,并且巨正则蒙特卡罗模拟(GCMC)与观察到的Ga-MIL-53-L的水吸附等温线一致。