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来自发烟硝酸的含氧阴离子贵金属化合物:钯的实例Pd(NO3)2和Pd(CH3SO3)2

Oxoanionic noble metal compounds from fuming nitric acid: the palladium examples Pd(NO3)2 and Pd(CH3SO3)2.

作者信息

Bruns Jörn, Klüner Thorsten, Wickleder Mathias S

机构信息

Carl von Ossietzky Universität Oldenburg, Institut für Chemie, Carl-von-Ossietzky Strasse 9-11, 26129 Oldenburg (Germany), Fax: (+49) 441-798-3352.

出版信息

Chemistry. 2015 Jan 12;21(3):1294-301. doi: 10.1002/chem.201405355. Epub 2014 Nov 27.

Abstract

The oxidation of elemental palladium at 100 °C in a mixture of fuming nitric acid and a pyridine-SO3 complex leads to the anhydrous nitrate Pd(NO3)2 (monoclinic, P2(1)/n, Z=2, a=469.12(3) pm, b=593.89(3) pm, c=805.72(4) pm, β=105.989(3)°, V=215.79(2) Å(3)). The Pd(2+) ions are in square-planar coordination with four monodentate nitrate groups which are connected to further palladium atoms, leading to a layer structure. The reaction of elemental palladium with a mixture of fuming nitric acid and methanesulfonic acid at 120 °C leads to single crystals of Pd(CH3SO3)2 (monoclinic, P2(1)/n, Z=2, a=480.44(1) pm, b=1085.53(3) pm, c=739.78(2) pm, β=102.785(1)°, V=376.254(17) Å(3)). Also in this structure the Pd(2+) ions are in square-planar coordination with four monodentate anions; however, the connection to adjacent palladium atoms leads to a chain-type structure. The thermal decomposition of the compounds has been investigated by means of DSC/TG measurements. Furthermore, IR and Raman spectra have been recorded, and an assignment of the observed vibrational frequencies has been carried out based on theoretical investigations.

摘要

在发烟硝酸和吡啶 - SO₃ 络合物的混合物中,元素钯在 100°C 下氧化生成无水硝酸盐 Pd(NO₃)₂(单斜晶系,P2(1)/n,Z = 2,a = 469.12(3) pm,b = 593.89(3) pm,c = 805.72(4) pm,β = 105.989(3)°,V = 215.79(2) ų)。Pd²⁺ 离子与四个单齿硝酸根呈平面正方形配位,这些硝酸根与其他钯原子相连,形成层状结构。元素钯与发烟硝酸和甲磺酸的混合物在 120°C 下反应生成 Pd(CH₃SO₃)₂ 的单晶(单斜晶系,P2(1)/n,Z = 2,a = 480.44(1) pm,b = 1085.53(3) pm,c = 739.78(2) pm,β = 102.785(1)°,V = 376.254(17) ų)。在此结构中,Pd²⁺ 离子同样与四个单齿阴离子呈平面正方形配位;然而,与相邻钯原子的连接形成链状结构。通过 DSC/TG 测量研究了这些化合物的热分解。此外,记录了红外和拉曼光谱,并基于理论研究对观察到的振动频率进行了归属。

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