Methods for Synthesis of Molecular Materials with Unique Physical Properties

A. Sidorov, M. Kiskin, A. Baranchikov, V. Ivanov, I. Eremenko
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Abstract

The authors discovered and investigated new types of stable heterometallic carboxylate complexes in which divalent transition metal atoms of the 4th period of the Periodic Table of Chemical Elements (V, Co, Ni, Cu, Zn) combine with atoms of lithium, magnesium, calcium or rare earth elements. These polynuclear heterometallic compounds retain their structure under conditions when the homometallic compounds of these transition metals decompose to mononuclear complexes. The different metals combination in one molecule allows us to use the obtained heterometallic compounds for producing disperse and film oxide materials, and bimetallic oxide catalysts. The stability of the complexes allows to immobilize them in various matrices and to assemble 3D polymer structures on their base. Since the metal ions under consideration (V, Co, Ni, Cu, Zn) are capable to form isostructural heterometallic compounds, it becomes possible to obtain compounds within a single structural type with a given combination of physical properties, determined by the nature of the metal ions.
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具有独特物理性质的分子材料的合成方法
作者发现并研究了化学元素周期表第4周期二价过渡金属原子(V、Co、Ni、Cu、Zn)与锂、镁、钙或稀土元素原子结合形成的新型稳定的异金属羧酸配合物。当这些过渡金属的同金属化合物分解为单核配合物时,这些多核异金属化合物保持其结构。不同的金属在一个分子中的结合使我们可以利用所获得的异金属化合物来生产分散和薄膜氧化物材料,以及双金属氧化物催化剂。配合物的稳定性允许它们固定在各种基质中,并在其基础上组装3D聚合物结构。由于所考虑的金属离子(V, Co, Ni, Cu, Zn)能够形成等结构的异质金属化合物,因此有可能获得具有单一结构类型的化合物,这些化合物具有由金属离子的性质决定的给定物理性质组合。
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