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对铁(III)对苯二甲酸金属有机框架MOF - 235和MIL - 101不规则合成的实验研究。

Experimental investigations into the irregular synthesis of iron(iii) terephthalate metal-organic frameworks MOF-235 and MIL-101.

作者信息

Simonsson Isabelle, Gärdhagen Philip, Andrén Moira, Tam Pui Lam, Abbas Zareen

机构信息

Department of Chemistry and Molecular Biology, University of Gothenburg, Gothenburg, Sweden.

出版信息

Dalton Trans. 2021 Apr 14;50(14):4976-4985. doi: 10.1039/d0dt04341a. Epub 2021 Mar 26.

DOI:10.1039/d0dt04341a
PMID:33877196
Abstract

MOF-235(Fe) and MIL-101(Fe) are two well-studied metal-organic frameworks (MOFs) with dissimilar crystal structures and topologies. Previously reported syntheses of the former show that it has greatly varying surface areas, indicating a lack of phase purity of the products, i.e. the possible presence of both MOFs in the same sample. To find the reason for this, we have tested and modified the commonly used synthesis protocol of MOF-235(Fe), where a 3 : 5 molar ratio of iron(iii) ions and a terephthalic acid linker is heated in a 1 : 1 DMF : ethanol solvent at 80 °C for 24 h. Using XRD and BET surface area (SA) measurements, we found that it is difficult to obtain a pure phase of MOF-235, as MIL-101 also appears to form during the solvothermal treatment. Comparison of the XRD peak height ratios of the synthesis products revealed a direct correlation between the MOF-235/MIL-101 content and surface area; more MOF-235 yields a lower surface area and vice versa. In general, using a larger (3 : 1) DMF : ethanol ratio than that reported in the literature and a stoichiometric (4 : 3) Fe(iii) : TPA ratio yields a nearly pure MOF-235 product (SA = 295 m g, 67% yield). An optimized synthesis procedure was developed to obtain high-surface area MIL-101(Fe) (SA > 2400 m g) in a large yield and at a previously unreported temperature (80 °C vs. previously used 110-150 °C). In situ X-ray scattering was utilized to investigate the crystallization of MOF-235 and MIL-101. At 80 °C, only MOF-235 formed and at 85 and 90 °C, only MIL-101 formed.

摘要

MOF-235(Fe)和MIL-101(Fe)是两种经过充分研究的金属有机框架材料(MOF),它们具有不同的晶体结构和拓扑结构。先前报道的前者的合成表明,其表面积变化很大,这表明产物缺乏相纯度,即同一样品中可能同时存在两种MOF。为了找出原因,我们测试并修改了常用的MOF-235(Fe)合成方案,即将铁(III)离子与对苯二甲酸连接体按3∶5的摩尔比在1∶1的N,N-二甲基甲酰胺(DMF)∶乙醇溶剂中于80℃加热24小时。通过X射线衍射(XRD)和比表面积(SA)测量,我们发现很难获得MOF-235的纯相,因为在溶剂热处理过程中似乎也会形成MIL-101。合成产物的XRD峰高比的比较揭示了MOF-235/MIL-101含量与表面积之间的直接相关性;更多的MOF-235会导致较低的表面积,反之亦然。一般来说,使用比文献报道更大的(3∶1)DMF∶乙醇比例和化学计量比(4∶3)的铁(III)∶对苯二甲酸(TPA)比例可得到近乎纯的MOF-235产物(SA = 295 m²/g,产率67%)。我们开发了一种优化的合成程序,以高产量在一个先前未报道的温度(80℃,而之前使用的是110 - 150℃)下获得高比表面积的MIL-101(Fe)(SA > 2400 m²/g)。利用原位X射线散射研究了MOF-235和MIL-101的结晶过程。在80℃时,只形成了MOF-235,而在85℃和90℃时,只形成了MIL-101。

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