Department of Chemistry, Georgetown University, 37th and O Streets, NW, Washington DC 20057, USA.
Dalton Trans. 2018 Oct 2;47(38):13419-13433. doi: 10.1039/c8dt02920b.
Three bismuth-2,5-thiophenedicarboxylates (Bi-TDC) and two europium-2,5-thiophenedicarboxylates (Eu-TDC) were synthesized under ambient conditions. The structures were determined through single crystal X-ray diffraction, and three of the phases were further characterized by powder X-ray diffraction, Raman spectroscopy, and thermogravimetric analysis. Reactions of bismuth nitrate, 2,5-thiophenedicarboxylate, and pyridine in an acidic solution of acetic acid and ethanol yield Hpy[Bi(TDC)2(H2O)]·1.5H2O (1), whereas reactions in a water/ethanol mixture produce a minor phase, [Hpy]3[Bi2(TDC)4(HTDC)(H2O)]·xH2O (2) along with a major product, (Hpy)2[Bi(TDC)2(HTDC)]·0.36H2O (3). The structures of 1-3 are all built from anionic Bi-TDC chains that are further bridged through additional TDC linkages into interpenetrated 2D sheets. Addition of an aqueous lanthanide solution to the reaction mixtures that yielded 1 and 2-3 resulted in the formation of doped phases, Hpy[Bi1-xLnx(TDC)2(H2O)]·1.5H2O (Bi1-xLnx-1), where Ln = Nd, Sm, Eu, Tb, Dy, and Yb, and (Hpy)2[Bi0.99Eu0.01 (TDC)2(HTDC)]·0.36H2O (Bi0.99Eu0.01-3). Using europium nitrate rather than the bismuth precursor resulted in the formation of two homometallic europium based phases, [Eu(TDC)(NO3)(H2O)]n (4) and [Eu2(TDC)3(H2O)9]·5H2O (5), which adopt an extended 3D network and an interpenetrated 2D structure, respectively. Photophysical measurements were carried out for 1 and the lanthanide containing phases and quantum yield and lifetime values were determined for the visible light emitters. Herein, the structural chemistry, spectroscopic properties, and luminescence of the bismuth phases, their lanthanide doped analogs, and the europium compounds are presented.
三种 2,5-噻吩二甲酸铋(Bi-TDC)和两种 2,5-噻吩二甲酸铕(Eu-TDC)在常温常压下合成。通过单晶 X 射线衍射确定了结构,其中三个相进一步通过粉末 X 射线衍射、拉曼光谱和热重分析进行了表征。在乙酸和乙醇的酸性溶液中,硝酸铋、2,5-噻吩二甲酸和吡啶反应生成 Hpy[Bi(TDC)2(H2O)]·1.5H2O(1),而在水/乙醇混合物中反应则生成次要相[Hpy]3[Bi2(TDC)4(HTDC)(H2O)]·xH2O(2)以及主要产物(Hpy)2[Bi(TDC)2(HTDC)]·0.36H2O(3)。1-3 的结构均由阴离子 Bi-TDC 链组成,这些链通过额外的 TDC 键桥接形成互穿的 2D 片层。将含镧系元素的水溶液加入生成 1 和 2-3 的反应混合物中,形成掺杂相 Hpy[Bi1-xLnx(TDC)2(H2O)]·1.5H2O(Bi1-xLnx-1),其中 Ln = Nd、Sm、Eu、Tb、Dy 和 Yb,以及(Hpy)2[Bi0.99Eu0.01(TDC)2(HTDC)]·0.36H2O(Bi0.99Eu0.01-3)。使用硝酸铕而不是铋前体制备,则形成了两种同型铕基相[Eu(TDC)(NO3)(H2O)]n(4)和[Eu2(TDC)3(H2O)9]·5H2O(5),它们分别采用扩展的 3D 网络和互穿的 2D 结构。对 1 和含镧系元素的相进行了光物理测量,并确定了可见光发射器的量子产率和寿命值。本文介绍了铋相及其镧系元素掺杂类似物和铕化合物的结构化学、光谱性质和发光性质。