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Synthesis, structure, and corrosion inhibiting properties of phenylacetato-rare earth(III) complexes

机译:苯乙酯稀土(III)复合物的合成,结构和腐蚀性能

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A series of phenylacetato (PhAc) rare earth complexes with aqua and 2,2 '-bipyridine (bpy) co-ligands have been synthesized by metathesis reactions in water. Structures of the aqua complexes [RE(PhAc)(3)(H2O)] (n) (RE = Y, La, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho), {[Lu-4(PhAc)(12)(H2O)(2)]center dot 1.5H(2)O} (n) and the bpy derivatives [RE(PhAc)(3)(bpy)](2) (RE = Y, Nd, Eu, Er) and {[La(PhAc)(3)(H2O)] (.) 1/2bpy} (n) have been determined. Powder XRD determined all aqua complexes except RE = Er, Yb, Lu are isotypic linear polymers, with nine coordinate tricapped trigonal prismatic geometry. The lutetium complex is also a linear polymer, but with distinct metal centers, three eight coordinate, and one nine. Except for RE = La and Ce, the bpy analogues are isostructural symmetrical dimers, with nonacoordinate metal centers. The lanthanum complex is a nonacoordinate linear polymer with coordinated water and lattice bpy. Their corrosion inhibitory properties on mild steel, showed the highest efficiency for [Nd(PhAc)(3)(H2O)] (n) (55%). The lanthanum species with solvated 2,2 '-bipyridine proved a more effective corrosion inhibitor than the aqua version. Where both the aqua and bpy complexes were tested, the former performed better than the latter. These results provide insight into the effect of structure on the corrosion inhibiting properties of rare earth carboxylates.
机译:在水中通过复分解反应合成了一系列苯乙酰乙酸(PhAc)稀土与水和2,2'-联吡啶(bpy)共配体的配合物。水配合物[RE(PhAc)(3)(H2O)](n)(RE=Y,La,Pr,Nd,Sm,Eu,Gd,Tb,Dy,Ho),{[Lu-4(PhAc)(12)(H2O)(2)]中心点1.5H(2)O}(n)和bpy衍生物[RE(PhAc)(3)(bpy)](2)(RE=Y,Nd,Eu,Er和{[La PhAc)(3)(H2O)]()测定了1/2bpy}(n)。粉末XRD测定,除RE=Er、Yb、Lu外,所有水配合物均为同型线性聚合物,具有九坐标三角棱柱几何形状。镥配合物也是一种线性聚合物,但具有不同的金属中心、三个八配位和一个九配位。除RE=La和Ce外,bpy类似物均为等结构对称二聚体,具有非配位金属中心。镧配合物是一种具有配位水和晶格bpy的非配位线性聚合物。它们对低碳钢的缓蚀性能表明[Nd(PhAc)(3)(H2O)](n)(55%)的效率最高。事实证明,含溶剂化2,2'-联吡啶的镧系缓蚀剂比水系缓蚀剂更有效。在测试aqua和bpy复合物的情况下,前者的表现优于后者。这些结果提供了结构对稀土羧酸盐缓蚀性能影响的见解。

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