Institute of Chemistry, University of Kassel, Heinrich-Plett-Straße 40, 34132 Kassel, Germany.
Molecules. 2017 Jul 7;22(7):1133. doi: 10.3390/molecules22071133.
This study was motivated by our recent observation that the analytical reagent Nitron () is an "instant carbene", whose reaction with coinage metal salts MX afforded complexes of its carbenic tautomer 1,4-diphenyl-3-phenylamino-1,2,4-triazol-5-ylidene ('). Our aim was to establish an alkyl homologue of in order to achieve a carbenic tautomer of higher donicity. For this purpose 1--butyl-4-methyl-1,2,4-triazol-4-ium-3--butylaminide () was synthesized. Its reactions with MX afforded complexes of the carbenic tautomer 1--butyl-3--butylamino-4-methyl-1,2,4-triazol-5-ylidene ('). With a stoichiometric ratio of 1:1 complexes of the type [MX(')] were obtained. A ratio of 2:1 furnished complexes of the type [MX(')₂] or [M(')₂]X. ' is a better σ-donor and less electrophilic than ' according to NMR spectroscopic data of H[BF₄] and ' = Se, respectively, and IR spectroscopic data of [RhCl(')(CO)₂] confirm that its net electron donor capacity is superior to that of '. A comparison of the complexes of ' and ' reveals two pronounced structural differences. [CuX(')₂] (X = Cl, Br) exhibit more acute C‒Cu‒C bond angles than [CuX(')₂]. In contrast to [CuCl(')], [CuCl(')] aggregates through Cu···Cu contacts of ca. 2.87 Å, compatible with cuprophilic interactions. These differences may be explained by the complementary steric requirements of the -Bu and the Me substituent of '.
这项研究的动机源于我们最近的观察,即分析试剂 Nitron()是一种“瞬间卡宾”,它与货币金属盐 MX 反应生成其碳烯互变异构体 1,4-二苯基-3-苯基氨基-1,2,4-三唑-5-亚基(')的配合物。我们的目的是建立一个烷基类似物,以实现更高给电子性的碳烯互变异构体。为此,合成了 1-丁基-4-甲基-1,2,4-三唑-4- 鎓-3-丁基氨基化物()。它与 MX 的反应生成碳烯互变异构体 1-丁基-3-丁基氨基-4-甲基-1,2,4-三唑-5-亚基(')的配合物。在 1:1 的化学计量比下,得到了[MX(')]类型的配合物。2:1 的比例提供了[MX(')₂]或[M(')₂]X 类型的配合物。根据 H[BF₄]和'= Se 的 NMR 光谱数据,'是比'更好的σ给体和较少的亲电性,IR 光谱数据的[RhCl(')(CO)₂]证实其净电子供体能力优于'。'和'的配合物的比较揭示了两个明显的结构差异。[CuX(')₂](X = Cl,Br)比[CuX(')₂]具有更锐角的 C‒Cu‒C 键角。与[CuCl(')]不同,[CuCl(')]通过大约 2.87 Å 的 Cu···Cu 接触聚合,与铜亲和相互作用兼容。这些差异可以通过 -Bu 和 Me 取代基的互补空间要求来解释。