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通过X射线吸收精细结构光谱对浓硝酸和高氯酸溶液中钯(II)进行结构研究。

Structural investigation of Pd(II) in concentrated nitric and perchloric acid solutions by XAFS.

作者信息

Purans J, Fourest B, Cannes C, Sladkov V, David F, Venault L, Lecomte M

机构信息

Institut de Physique Nucléaire, 91406 Orsay Cedex, France.

出版信息

J Phys Chem B. 2005 Jun 2;109(21):11074-82. doi: 10.1021/jp045489n.

DOI:10.1021/jp045489n
PMID:16852349
Abstract

XAFS spectra of palladium(II) in concentrated HNO3/HClO4 acid mixtures have been recorded and analyzed. Structural parameters of the Pd(H2O)4(2+) complex and the mixed nitric Pd(NO3)2(H2O)2 complex, for the first time, were determined by the XAFS method. For pure 5 M HClO4 and for mixtures (0-0.3 M HNO3), the XAFS spectra of the 0.02 M Pd solutions are indeed very similar and originated from four Pd-O(w) equivalent distances. For the Pd(H2O)4(2+) square-planar aqua ion in strong perchloric acid, the use of an FEFF6 theoretical approach led to a first-shell Pd-O(w) distance of 2.00 (1) A and a Debye-Waller (DW) factor of sigma2 = 0.0030 (3) A2. Four water molecules are tightly bound to the Pd2+ ion in the equatorial plane, while two (or one) axial water molecules are weakly bound to the metal ion at 2.5 A with a DW factor of 0.015 (5) A2. For highly concentrated mixtures (4-6 M HNO3) and for pure concentrated (4-6 M) nitric acid as well as for crystalline powder Pd(NO3)2(H2O)2, the XAFS spectra are very similar and are determined by the mixed nitric complex Pd(NO3)2(H2O)2: four Pd-O near-equivalent distances of 2.01 (1) A from two H2O and two NO3 molecules with a total DW factor of sigma2 = 0.0037 (3) A2. Moreover, two Pd---N distances of 2.8-2.9 A were determined in the second coordination shell. Finally, for intermediate mixtures (1-3 M HNO3 in 5 M HClO4), the XAFS spectra are a superposition of the XAFS of Pd(H2O)4(2+) and Pd(NO3)2(H2O)2 complexes. The mean ligand number NO3(-) around Pd2+ has been calculated, and the XAFS results at pH close to zero confirm the spectrophotometric results previously published.

摘要

已记录并分析了钯(II)在浓硝酸/高氯酸混合酸中的X射线吸收精细结构(XAFS)光谱。首次通过XAFS方法确定了Pd(H₂O)₄²⁺络合物和混合硝酸钯Pd(NO₃)₂(H₂O)₂络合物的结构参数。对于纯5M高氯酸以及混合物(0 - 0.3M硝酸),0.02M钯溶液的XAFS光谱确实非常相似,源自四个等效的Pd - O(w)距离。对于强高氯酸中的Pd(H₂O)₄²⁺平面水合离子,使用FEFF6理论方法得出第一配位层的Pd - O(w)距离为2.00(1) Å,德拜 - 沃勒(DW)因子σ² = 0.0030(3) Ų。四个水分子在赤道平面紧密结合到Pd²⁺离子上,而两个(或一个)轴向水分子在2.5 Å处弱结合到金属离子上,DW因子为0.015(5) Ų。对于高浓度混合物(4 - 6M硝酸)、纯浓(4 - 6M)硝酸以及结晶粉末Pd(NO₃)₂(H₂O)₂,XAFS光谱非常相似,由混合硝酸络合物Pd(NO₃)₂(H₂O)₂决定:来自两个H₂O和两个NO₃分子的四个近等效Pd - O距离为2.01(1) Å,总DW因子σ² = 0.0037(3) Ų。此外,在第二配位层确定了两个2.8 - 2.9 Å的Pd---N距离。最后,对于中间混合物(5M高氯酸中1 - 3M硝酸),XAFS光谱是Pd(H₂O)₄²⁺和Pd(NO₃)₂(H₂O)₂络合物XAFS的叠加。计算了Pd²⁺周围的平均配体数NO₃⁻,接近零pH值时的XAFS结果证实了先前发表的分光光度法结果。

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