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Imposing high-symmetry and tuneable geometry on lanthanide centres with chelating Pt and Pd metalloligands

机译:螯合Pt和Pd金属配体在镧系元素中心施加高对称性和可调整的几何形状

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摘要

Exploitation of HSAB preferences allows for high-yield, one-pot syntheses of lanthanide complexes chelated by two Pd or Pt metalloligands, [MII(SAc)4]2– (SAc = thioacetate, M = Pd, Pt). The resulting complexes with 8 oxygen donors surrounding the lanthanides can be isolated in crystallographically tetragonal environments as either [NEt4]+ (space group: P4/mcc) or [PPh4]+ (space group: P4) salts. In the case of M = Pt, the complete series of lanthanide complexes has been structurally characterized as the [NEt4]+ salts (except for Ln = Pm), while the [PPh4]+ salts have been structurally characterized for Ln = Gd–Er, Y. For M = Pd, selected lanthanide complexes have been structurally characterized as both salts. The only significant structural difference between salts of the two counter ions is the resulting twist angle connecting tetragonal prismatic and tetragonal anti-prismatic configurations, with the [PPh4]+ salts approaching ideal D4d symmetry very closely (φ = 44.52–44.61°) while the [NEt4]+ salts exhibit intermediate twist angles in the interval φ = 17.28–27.41°, the twist increasing as the complete 4f series is traversed. Static magnetic properties for the latter half of the lanthanide series are found to agree well in the high temperature limit with the expected Curie behavior. Perpendicular and parallel mode EPR spectroscopy on randomly oriented powder samples and single crystals of the Gd complexes with respectively Pd- and Pt-based metalloligands demonstrate the nature of the platinum metal to strongly affect the spectra. Consistent parametrization of all of the EPR spectra reveals the main difference to stem from a large difference in the magnitude of the leading axial term, B02, this being almost four times larger for the Pt-based complexes as compared to the Pd analogues, indicating a direct Pt(5dz2)–Ln interaction and an arguable coordination number of 10 rather than 8. The parametrization of the EPR spectra also confirms that off-diagonal operators are associated with non-zero parameters for the [NEt4]+ salts, while only contributing minimally for the [PPh4]+ salts in which lanthanide coordination approximates D4d point group symmetry closely.
机译:利用HSAB偏好性可以一锅合成由两个Pd或Pt金属配体[M II (SAc)4] 2 – ( SAc =硫代乙酸盐,M = Pd,Pt)。可以在晶体学四方环境中以[NEt4] + (空间组:P4 / mcc)或[PPh4] + 的形式在晶体学四方环境中分离得到的镧系元素周围8个氧供体的配合物。 (空间组:P4 / n)盐。在M = Pt的情况下,整个镧系元素络合物的结构特征是[NEt4] + 盐(Ln = Pm除外),而[PPh4] + <对于Ln = Gd-Er,Y,已经对盐进行了结构表征。对于M = Pd,对选定的镧系元素络合物在结构上都表征为两种盐。两种抗衡离子的盐之间唯一显着的结构差异是连接四方棱柱和四方反棱柱构型的扭曲角,其中[PPh4] + 盐非常接近理想的D4d对称性(φ= 44.52–44.61°),而[NEt4] + 盐在φ= 17.28–27.41°范围内表现出中等的扭曲角,随着整个4f系列的遍历,扭曲增加。镧系的后半部分的静磁性能在高温极限下与预期的居里行为非常吻合。随机取向粉末样品和分别具有基于Pd和Pt的金属配体的Gd配合物的单晶的垂直和平行模式EPR光谱证明了铂金属的性质会强烈影响光谱。所有EPR光谱的一致参数化揭示了主要差异是由于前导轴向项B02的大小存在较大差异,与基于Pd的类似物相比,基于Pt的配合物几乎大四倍,表明直接的Pt(5dz 2 )-Ln相互作用和可争论的配位数为10而不是8。EPR光谱的参数化还证实了非对角线算子与[[ NEt4] + 盐,而对镧系配位紧密接近D4d点组对称性的[PPh4] + 盐贡献最小。

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