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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Unusually strong heteroatomic bonding in the complex polyanion of intermetallic Ba6Pt22Al53
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Unusually strong heteroatomic bonding in the complex polyanion of intermetallic Ba6Pt22Al53

机译:在金属间质Ba6PT22AL53的复合多沉聚阴离子中异常强烈的杂原子键合

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摘要

The new intermetallic compound Ba6Pt22Al53 was obtained from reaction of the elements. The title compound crystallizes in the hexagonal crystal system with lattice parameters of a = 1427.5(3) and c = 1614.3(4) pm and space group P6(3)/mcm (Z = 2) and adopts a new structure type (Pearson code hP162, Wyckoff sequence l(2)k(3)j(2)i(2)hg(2)ecb). In the structure, the Pt and Al atoms form a complex polyanionic [Pt22Al53](delta-) network, while the Ba cations reside in cavities. The structure can be described as a packing of layers, formed by the Pt@Al-n polyhedra parallel to (001). The layers are stacked in an ABCB fashion. Within the [Pt22Al53] framework, one of the shortest Pt-Al distances (239 pm) reported is found, suggesting extremely strong covalent bonding interactions. Due to slightly enhanced displacement parameters of the Al9 site, temperature dependent single-crystal X-ray diffraction (285 and 90 K) and low-temperature heat capacity experiments were conducted. However, no structural phase transition was observed down to 2 K. With the help of DFT calculations, the bonding situation was elucidated in detail, verifying the strong heteroatomic bonding and the destabilization of the structure upon in silico distortions. Mulliken charge calculations confirm the picture of the polyanionic framework and cationic Ba atoms within the cavities.
机译:新的金属间化合物Ba6PT22Al53从元素的反应中获得。标题化合物在六边形晶体系统中结晶,晶格参数A = 1427.5(3)和C = 1614.3(4)PM和空间组P6(3)/ MCM(Z = 2)并采用新的结构类型(Pearson代码HP162,Wyckoff序列L(2)K(3)J(2)I(2)Hg(2)ECB)。在该结构中,Pt和Al原子形成复杂的聚阴离子[Pt22Al53](Delta-)网络,而BA阳离子位于腔中。该结构可以被描述为层的填充,由PT @ Al-N多面体平行于(001)形成。这些层以ABCB时尚堆叠。在[PT22AL53]框架内,发现了最短的PT-Al距离(239μm),表明具有极强的共价键合相互作用。由于AL9位点的略微增强的位移参数,进行温度依赖性单晶X射线衍射(285和90K)和低温热容量实验。然而,借助于DFT计算的帮助,借助于DFT计算,详细阐明了粘合情况,验证了硅畸变的强杂原子键和结构的稳定化。 Mulliken Charge Computation确认在空腔内的聚阴离子框架和阳离子BA原子的图片。

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