Henan Key Laboratory of Polyoxometalate Chemistry, College of Chemistry and Chemical Engineering , Henan University , Kaifeng , Henan 475004 , People's Republic of China.
State Key Laboratory of Structural Chemistry , Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences , Fuzhou , Fujian 350002 , People's Republic of China.
Inorg Chem. 2019 Mar 4;58(5):3479-3491. doi: 10.1021/acs.inorgchem.9b00004. Epub 2019 Feb 14.
Three kinds of distinguishing ala-decorated RE-incorporated (ala = l-alanine, RE = rare-earth) polytungstoarsenate hybrids containing {AsWO} building blocks [HN(CH)]NaH[EuW(HO)(ala)O(AsWO)]·35HO (1), [HN(CH)]NaH[REW(HO)(ala)O(OH)(AsWO)]·36HO [RE = Gd (2), Tb (3)], and [HN(CH)]Na[REW(HO)(ala)O(OH)(AsWO)]·40HO [RE = Dy (4), Ho (5), Er (6), Yb (7), Lu (8)] were made in a facile one-step assembly strategy. The polyoxoanion skeletons of 1-8 are very similar, and all can be described as two [AsWO] moieties encapsulating an ala-decorated W-O-RE heterometallic cluster ([EuW(HO)(ala)O] for 1, [REW(HO)(ala)O(OH)] for 2-3, and [REW(HO)(ala)O(OH)] for 4-8, resulting in a four-leaf--clover-shaped tetrameric structure; however, the major discrepancy in the ala-decorated W-O-RE heterometallic clusters lies in the number of ala molecules equaling to three, four, and two, which may result from the various coordination geometries of RE ions and the different construction modes of W-O-RE heterometallic clusters. It should be emphasized that the carboxyl groups of ala ligands only coordinate to the W centers in 4-8, while they not only bridge the W centers together but also combine RE ions together in 1-3. Besides, the solid luminescent properties and lifetime decay behaviors of 1, 3, 4, 5, and 6 were systematically investigated at ambient temperature, and time-resolved fluorescence spectra of 1, 3, and 5 were also examined. Furthermore, the electrochemical response properties of composite CS-CMWCNs-1, 3, or 5/GCE electrochemical sensors toward the dopamine detection were investigated, which will offer the possibility of RE-incorporated polyoxometalates for acting as electrochemical response electrode materials.
三种含{AsWO}构筑单元的具有手性蝶形结构的 RE 取代多钨砷酸盐杂化材料 [HN(CH)]NaH[EuW(HO)(ala)O(AsWO)]·35H_2O(1)、[HN(CH)]NaH[REW(HO)(ala)O(OH)(AsWO)]·36H_2O [RE = Gd(2),Tb(3)]和[HN(CH)]Na[REW(HO)(ala)O(OH)(AsWO)]·40H_2O [RE = Dy(4),Ho(5),Er(6),Yb(7),Lu(8)]是通过简便的一步组装策略合成的。1-8 的多氧阴离子骨架非常相似,都可以描述为两个[AsWO]单元包裹一个手性蝶形的 W-O-RE 杂金属簇([EuW(HO)(ala)O] 对于 1,[REW(HO)(ala)O(OH)] 对于 2-3,和[REW(HO)(ala)O(OH)] 对于 4-8,形成四叶三叶草状的四聚体结构;然而,手性蝶形 W-O-RE 杂金属簇的主要区别在于 ala 分子的数量等于 3、4 和 2,这可能是由于 RE 离子的各种配位几何形状和 W-O-RE 杂金属簇的不同构建模式所致。值得强调的是,ala 配体的羧基仅与 4-8 中的 W 中心配位,而在 1-3 中,它们不仅桥连 W 中心,还将 RE 离子结合在一起。此外,在室温下系统地研究了 1、3、4、5 和 6 的固态发光性质和寿命衰减行为,并检测了 1、3 和 5 的时间分辨荧光光谱。此外,还研究了复合 CS-CMWCNs-1、3 或 5/GCE 电化学传感器对多巴胺检测的电化学响应特性,这为 RE 取代多金属氧酸盐作为电化学响应电极材料提供了可能性。