Miras Haralampos N, Raptis Raphael G, Lalioti Nikolia, Sigalas Michael P, Baran Peter, Kabanos Themistoklis A
Department of Chemistry, Section of Inorganic and Analytical Chemistry, University of Ioannina, 45110 Ioannina, Greece.
Chemistry. 2005 Apr 8;11(8):2295-306. doi: 10.1002/chem.200400203.
Reaction of NH4VO3 with sulfur dioxide affords the hexanuclear cluster (NH4)2(Et4N)[(V(IV)O)6(mu4-O)2(mu3-OH)2(mu3-SO3)4(H2O)2]Cl x H2O (1), and the decapentanuclear host-guest compound (Et4N)5{Cl subset [(VO)15(mu3-O)18(mu-O)3]} x 3 H2O (2). Sequential addition of magnesium oxide to an acidic aqueous solution of NH4VO3 (pH approximately 0) followed by (NH4)2SO3 resulted in the formation of either the non-oxo polymeric vanadium(IV) compound trans-(NH4)2[V(IV)(OH)2(mu-SO3)2] (3) or the polymeric oxovanadium(IV) sulfite (NH4)[V(IV)O(SO3)1.5(H2O)] x 2.5 H2O (4) at pH values of 6 and 4, respectively. The decameric vanadium(V) compound {Na4(mu-H2O)8(H2O)6}[Mg(H2O)6][V(V)10(O)8(mu6-O)2(mu3-O)14] x 3 H2O (5) was synthesised by treating an acidic aqueous solution of NH4VO3 with MgO and addition of NaOH to pH approximately 6. All the compounds were characterised by single-crystal X-ray structure analysis. The crystal structure of compound 1 revealed an unprecedented structural motif of a cubane unit [M4(mu4-O)2(mu3-OH)2] connected to two other metal atoms. Compound 3 comprises a rare example of a non-oxo vanadium(IV) species isolated from aqueous solution and in the presence of the reducing agent SO3(2-), while compound 4 represents a rare example of an open-framework species isolated at room temperature (20 degrees C). In addition to the synthesis and crystallographic studies, we report the IR and magnetic properties (for 1, 2 and 3) of these vanadium clusters as well as theoretical studies on compound 3.
NH₄VO₃ 与二氧化硫反应生成六核簇合物 (NH₄)₂(Et₄N)[(V(IV)O)₆(μ₄ - O)₂(μ₃ - OH)₂(μ₃ - SO₃)₄(H₂O)₂]Cl·xH₂O (1),以及十五核主客体化合物 (Et₄N)₅{Cl⊂[(VO)₁₅(μ₃ - O)₁₈(μ - O)₃]}·3H₂O (2)。向 NH₄VO₃ 的酸性水溶液(pH 约为 0)中依次加入氧化镁,随后加入 (NH₄)₂SO₃,分别在 pH 值为 6 和 4 时生成了非氧聚合物钒(IV)化合物反式-(NH₄)₂[V(IV)(OH)₂(μ - SO₃)₂] (3) 或聚合物氧钒(IV)亚硫酸盐 (NH₄)[V(IV)O(SO₃)₁.₅(H₂O)]·2.5H₂O (4)。通过用氧化镁处理 NH₄VO₃ 的酸性水溶液并加入氢氧化钠使 pH 约为 6,合成了十聚钒(V)化合物 {Na₄(μ - H₂O)₈(H₂O)₆}[Mg(H₂O)₆][V(V)₁₀(O)₈(μ₆ - O)₂(μ₃ - O)₁₄]·3H₂O (5)。所有化合物均通过单晶 X 射线结构分析进行了表征。化合物 1 的晶体结构揭示了一种前所未有的结构基序,即一个立方烷单元 [M₄(μ₄ - O)₂(μ₃ - OH)₂] 与另外两个金属原子相连。化合物 3 是从水溶液中分离出的、在还原剂 SO₃²⁻ 存在下的非氧钒(IV)物种的罕见例子,而化合物 4 是在室温(20℃)下分离出的开放框架物种的罕见例子。除了合成和晶体学研究外,我们还报告了这些钒簇合物的红外和磁性性质(针对 1、2 和 3)以及对化合物 3 的理论研究。