Murugavel Ramaswamy, Sathiyendiran Malaichamy, Pothiraja Ramasamy, Walawalkar Mrinalini G, Mallah Talal, Riviére Eric
Department of Chemistry, Indian Institute of Technology-Bombay, Powai, Mumbai-400 076, India.
Inorg Chem. 2004 Feb 9;43(3):945-53. doi: 10.1021/ic0349508.
The reaction of di-tert-butyl phosphate (((t)BuO)(2)P(O)(OH), dtbp-H) with copper acetate in the presence of pyridine (py) and 2,4,6-trimethylpyridine (collidine) has been investigated. Copper acetate reacts with dtbp-H in a reaction medium containing pyridine, DMSO, THF, and CH(3)OH to yield a one-dimensional polymeric complex Cu(dtbp)(2)(py)(2)(mu-OH(2)) (1) as blue hollow crystalline tubes. The copper atoms in 1 are octahedral and are surrounded by two terminal phosphate ligands, two pyridine molecules, and two bridging water molecules. The mu-OH(2) ligands that are present along the elongated Jahn-Teller axis are responsible for the formation of the one-dimensional polymeric structure. Recrystallization of 1 in a DMSO/THF/CH(3)OH mixture results in the reorganization of the polymer and its conversion to a more stable tetranuclear copper cluster [Cu(4)(mu(3)-OH)(2)(dtbp)(6)(py)(2)] (2) in about 60% yield. The molecular structure of 2 is made up of a tetranuclear core [Cu(4)(mu(3)-OH)(2)] which is surrounded by six bidentate bridging dtbp ligands. While two of the copper atoms are pentacoordinate with a tbp geometry, the other two copper atoms exhibit a pseudooctahedral geometry with five normal Cu-O bonds and an elongated Cu-O linkage. The pentacoordinate copper centers bear an axial pyridine ligand. The short Cu.Cu nonbonded distances in the tetranuclear core of 2 lead to magnetic ordering at low temperature with an antiferromagnetic coupling at approximately 20 K (J(P) = -44 cm(-1), J(c) = -66 cm(-1), g = 2.25, and rho = 0.8%). When the reaction between di-tert-butyl phosphate (dtbp-H) and copper acetate was carried out in the presence of collidine, large dark-blue crystals of monomeric copper complex [Cu(dtbp)(2)(collidine)(2)] (3) formed as the only product. A single-crystal X-ray diffraction study of 3 reveals a slightly distorted square-planar geometry around the copper atom. Thermogravimetric analysis of 1-3 revealed a facile decomposition of the coordinated ligands and dtbp to produce a copper phosphate material around 500 degrees C. An independent solid-state thermolysis of all the three complexes in bulk at 500-510 degrees C for 2 days produced copper pyrophosphate Cu(2)P(2)O(7) along with small quantities of Cu(PO(3))(2) as revealed by DR-UV spectroscopic and PXRD studies.
研究了磷酸二叔丁酯(((t)BuO)(2)P(O)(OH),dtbp-H)与乙酸铜在吡啶(py)和2,4,6-三甲基吡啶(可力丁)存在下的反应。乙酸铜在含有吡啶、二甲基亚砜、四氢呋喃和甲醇的反应介质中与dtbp-H反应,生成一维聚合物配合物Cu(dtbp)(2)(py)(2)(μ-OH(2))(1),为蓝色空心晶体管。1中的铜原子呈八面体构型,被两个末端磷酸配体、两个吡啶分子和两个桥连水分子包围。沿拉长的 Jahn-Teller 轴存在的μ-OH(2)配体负责形成一维聚合物结构。在二甲基亚砜/四氢呋喃/甲醇混合物中对1进行重结晶,导致聚合物重组并转化为更稳定 的四核铜簇[Cu(4)(μ(3)-OH)(2)(dtbp)(6)(py)(2)](2),产率约为60%。2的分子结构由四核核心[Cu(4)(μ(3)-OH)(2)]组成,该核心被六个双齿桥连dtbp配体包围。虽然其中两个铜原子为五配位,具有tbp几何构型,但另外两个铜原子呈现假八面体几何构型,有五个正常的Cu-O键和一个拉长的Cu-O键。五配位铜中心带有一个轴向吡啶配体。2的四核核心中短的Cu.Cu非键距离导致在低温下产生磁有序,在约20 K时具有反铁磁耦合(J(P)= -44 cm(-1),J(c)= -66 cm(-1),g = 2.25,且ρ = 0.8%)。当在可力丁存在下进行磷酸二叔丁酯(dtbp-H)与乙酸铜的反应时,形成了单体铜配合物[Cu(dtbp)(2)(可力丁)(2)](3)的大深蓝色晶体作为唯一产物。对3的单晶X射线衍射研究表明铜原子周围的几何构型略呈扭曲的平面正方形。对1 - 3的热重分析表明,配位配体和dtbp容易分解,在约500℃时生成磷酸铜材料。如DR-UV光谱和PXRD研究所示,在500 - 510℃下将所有三种配合物独立进行本体固态热解2天,生成焦磷酸铜Cu(2)P(2)O(7)以及少量的Cu(PO(3))(2)。