Safari Manije, Sedghiniya Sima, Soleimannejad Janet, Janczak Jan
School of Chemistry, College of Science, University of Tehran, PO Box 14155-6455, Tehran, Iran.
Institute of Low Temperature and Structure Research, Polish Academy of Sciences, Okolna 2 str., Warsaw, 50-422, Poland.
Acta Crystallogr B Struct Sci Cryst Eng Mater. 2023 Apr 1;79(Pt 2):114-121. doi: 10.1107/S2052520623001105. Epub 2023 Feb 20.
In recent years, significant advances have been made in the precise control of the physical properties of metal-organic frameworks (MOFs) via the linker-modulated method in which modulators compete with linkers and impose kinetic limitations through crystal growth. In this regard, the structure of a new barium-organic framework [Ba(HBTC)(HO)], BaBTC (BTC = 1,3,5-benzene tricarboxylic acid) is introduced, which allows the competitive coordination strategy and growth orientation of an alkaline-earth metal-organic framework (AEMOF) to be probed without sacrificing phase purity, porosity and crystallinity. The modulator effect of an assortment of amino acids on the particle size and morphology of BaBTC is investigated. Additionally, another new MOF [Ba(BTC)(HO)].nHO, BaBTC-2, is synthesized through a change in the ligand concentration. This work gives a successful example of a modulation method for AEMOF synthesis by amino acids that may contribute towards targeting future avenues of nanomaterial synthesis.
近年来,通过连接体调制法在金属有机框架(MOF)物理性质的精确控制方面取得了重大进展,在该方法中,调节剂与连接体竞争,并通过晶体生长施加动力学限制。在这方面,引入了一种新型钡有机框架[Ba(HBTC)(HO)],即BaBTC(BTC = 1,3,5-苯三甲酸),它能够在不牺牲相纯度、孔隙率和结晶度的情况下探究碱土金属有机框架(AEMOF)的竞争配位策略和生长取向。研究了多种氨基酸对BaBTC粒径和形貌的调节剂效应。此外,通过改变配体浓度合成了另一种新型MOF [Ba(BTC)(HO)].nHO,即BaBTC-2。这项工作为通过氨基酸合成AEMOF的调制方法提供了一个成功范例,这可能有助于开拓未来纳米材料合成的新途径。