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Coordination chemistry of S-substituted isothiosemicarbazides and isothiosemicarbazones

机译:S-取代的异硫代氨基脲与异硫代氨基脲的配位化学

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While thiosemicarbazides and thiosemicarbazones, along with their metal complexes are well-presented in the literature, the coordination chemistry of S-substituted isothiosemicarbazides and their derivatives is far less known to the inorganic chemistry community. This review is an attempt to fill this gap. The unique identity of isothiosemicarbazides is expressed by the presence of the two amine groups in their structure, one hydrazinic and another isothioamidic, which are not related by symmetry and potentially are able to create a distinct ligand field. Another worthy of noting peculiarity is the reduced electron donating ability of the thioether sulfur atom when compared to that in thiosemicarbazide. These features were widely exploited for demonstration of the fascinating aspects of the coordination chemistry of isothiosemicarbazides, such as noninnocent redox behaviour and specific reactivity. Particular attention is paid to the use of isothiosemicarbazides for stepwise template building of tetradentate ligands with a varied set of donor atoms, e.g. N2O2, N2S2, N2SO, N3O, N-4, including N-4 macrocyclic systems with cis- and trans-arrangement of -SR groups. Successful demetallation procedures in many cases allowed studies of the coordination chemistry of first-, second- and third-row transition metals, when they are not effective as templates. Particular examples of the catalytic coordination template effect with the same aim of assembly of new ligand products are discussed. The cytotoxicity aspects when compared to thiosemicarbazides and thiosemicarbazones, as well as the use of metal complexes based on isothiosemicarbazones in catalysis, anion recognition, cation sensing, spin-transition are also briefly discussed. (C) 2019 Elsevier B.V. All rights reserved.
机译:尽管在文献中很好地介绍了硫代氨基脲和硫代氨基甲酰肼及其金属配合物,但无机化学界对S取代的异硫代氨基脲和它们的衍生物的配位化学知之甚少。这次审查是为了填补这一空白。异硫代氨基脲的独特身份是通过结构中两个胺基的存在来表达的,一个是肼基,另一个是异硫酰胺基,这两个对称性不相关,并且有可能形成独特的配体场。另一个值得注意的特性是,与硫代氨基脲相比,硫醚硫原子的给电子能力降低。这些特征被广泛用于证明异硫脲的配位化学的迷人方面,例如非纯氧化还原行为和比反应性。特别注意使用异硫杂氨基脲来逐步构建具有不同供体原子组的四齿配体的模板,如N 2 O 2,N 2 S 2,N 2 SO,N 3 O,N-4,包括具有-SR基团顺式和反式排列的N-4大环系统。在许多情况下,成功的脱金属程序可以有效地研究第一,第二和第三行过渡金属的配位化学,但它们不能有效地用作模板。讨论了具有相同目的的新配体产物组装的催化配位模板作用的特定实例。与硫代氨基脲和硫代半氨基甲酮相比,其细胞毒性方面以及在催化,阴离子识别,阳离子感测,自旋转变中基于异硫代半氨基甲酮的金属配合物的使用也进行了简要讨论。 (C)2019 Elsevier B.V.保留所有权利。

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