Institut für Anorganische Chemie, Christian-Albrechts-Universität zu Kiel, Max-Eyth Straße 2, 24118 Kiel (Germany), Fax: (+49) 4318801775.
Chemistry. 2013 Sep 9;19(37):12537-46. doi: 10.1002/chem.201301139. Epub 2013 Jul 29.
A systematic investigation of the systems Bi(3+)/carboxylic acid/HNO3 for the tri- and tetracarboxylic acids pyromellitic acid (H4Pyr), trimellitic acid (H3Tri) and trimesic acid (H3BTC) acid led to the discovery of five new bismuth carboxylates. Structural characterisation allowed the influence of the linker geometry and the Bi(3+):linker molar ratio in the starting solution on the crystal structure to be determined. The crystallisation of three selected compounds was investigated by in situ energy-dispersive X-ray diffraction. Three new crystalline intermediates were observed within minutes, and two of them could be isolated by quenching of the reaction mixture. Their crystal structures were determined from laboratory and synchrotron X-ray powder diffraction data and allowed a possible reaction pathway to be established. In depth characterisation of the luminescence properties of the three bismuth pyromellate compounds was carried out. Fluorescence and phosphorescence could be assigned to (mainly) ligand- and metal-based transitions. The polymorphs of Bi(HPyr) exhibit different luminescence properties, although their structures are very similar. Surprisingly, doping of the three host structures with Eu(3+) and Tb(3+) ions was only successful for one of the polymorphs.
对 Bi(3+)/羧酸/HNO3 体系进行了系统的研究,用于合成均苯四酸(H4Pyr)、偏苯三酸(H3Tri)和均苯三甲酸(H3BTC)的三羧酸和四羧酸。研究发现了五种新的铋羧酸盐。结构表征确定了连接体几何形状和起始溶液中 Bi(3+):连接体摩尔比对晶体结构的影响。通过原位能量色散 X 射线衍射研究了三种选定化合物的结晶过程。在几分钟内观察到了三个新的结晶中间体,其中两个可以通过淬灭反应混合物来分离。通过实验室和同步辐射 X 射线粉末衍射数据确定了它们的晶体结构,从而建立了可能的反应途径。对三种铋均苯酸盐化合物的发光性质进行了深入表征。荧光和磷光可以归因于(主要)配体和金属基跃迁。尽管它们的结构非常相似,但 Bi(HPyr)的多晶型物表现出不同的发光性质。令人惊讶的是,Eu(3+)和 Tb(3+)离子对三种主体结构的掺杂仅对其中一种多晶型物成功。