Institute of Inorganic Chemistry, Leibniz University Hannover, Hannover, Germany.
Chemistry. 2011 Jun 6;17(24):6643-51. doi: 10.1002/chem.201003211. Epub 2011 May 5.
We present an investigation on the influence of benzoic acid, acetic acid, and water on the syntheses of the Zr-based metal-organic frameworks Zr-bdc (UiO-66), Zr-bdc-NH(2) (UiO-66-NH(2)), Zr-bpdc (UiO-67), and Zr-tpdc-NH(2) (UiO-68-NH(2)) (H(2) bdc: terephthalic acid, H(2) bpdc: biphenyl-4,4'-dicarboxylic acid, H(2) tpdc: terphenyl-4,4''-dicarboxylic acid). By varying the amount of benzoic or acetic acid, the synthesis of Zr-bdc can be modulated. With increasing concentration of the modulator, the products change from intergrown to individual crystals, the size of which can be tuned. Addition of benzoic acid also affects the size and morphology of Zr-bpdc and, additionally, makes the synthesis of Zr-bpdc highly reproducible. The control of crystal and particle size is proven by powder XRD, SEM and dynamic light scattering (DLS) measurements. Thermogravimetric analysis (TGA) and Ar sorption experiments show that the materials from modulated syntheses can be activated and that they exhibit high specific surface areas. Water proved to be essential for the formation of well-ordered Zr-bdc-NH(2) . Zr-tpdc-NH(2), a material with a structure analogous to that of Zr-bdc and Zr-bpdc, but with the longer, functionalized linker 2'-amino-1,1':4',1''-terphenyl-4,4''-dicarboxylic acid, was obtained as single crystals. This allowed the first single-crystal structural analysis of a Zr-based metal-organic framework.
我们研究了苯甲酸、乙酸和水对 Zr 基金属有机骨架 Zr-bdc(UiO-66)、Zr-bdc-NH(2)(UiO-66-NH(2))、Zr-bpdc(UiO-67)和 Zr-tpdc-NH(2)(UiO-68-NH(2))(H(2)bdc:对苯二甲酸,H(2)bpdc:联苯-4,4'-二羧酸,H(2)tpdc:三联苯-4,4''-二羧酸)合成的影响。通过改变苯甲酸或乙酸的用量,可以调节 Zr-bdc 的合成。随着调节剂浓度的增加,产物从共生转变为单独的晶体,其大小可以进行调节。添加苯甲酸还会影响 Zr-bpdc 的大小和形态,并且使 Zr-bpdc 的合成具有高度重现性。粉末 XRD、SEM 和动态光散射(DLS)测量证明了晶体和颗粒尺寸的控制。热重分析(TGA)和 Ar 吸附实验表明,经调制合成的材料可以被激活,并且它们具有高比表面积。水被证明对于形成有序的 Zr-bdc-NH(2)是必不可少的。Zr-tpdc-NH(2)是一种具有与 Zr-bdc 和 Zr-bpdc 类似结构的材料,但具有更长的、功能化的连接体 2'-氨基-1,1':4',1''-三联苯-4,4''-二羧酸,是单晶。这使得对基于 Zr 的金属有机骨架的第一个单晶结构分析成为可能。