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The coordination chemistry of 1,2,4,5-tetrazines

机译:1,2,4,5-四嗪的配位化学

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1,2,4,5-Tetrazine and its 3,6-disubstituted derivatives exhibit a particular coordination chemistry, characterized by electron and charge transfer phenomena and by the ability of these heteroatom-rich ligands to bridge metal centers in various ways. A very low-lying π~* orbital localized at the four nitrogen atoms is responsible for intense low-energy charge transfer absorptions, electrical conductivity of coordination polymers, unusual stability of paramagnetic radical or mixed-valent intermediates and for often well-resolved EPR hyperfine structure in the radical complexes. Substituted 1,4-dihydro-1,2,4,5-tetrazines have also been used as bridging ligands. The structural consequences of electron transfer as well as the capability for efficient and variable metal-metal bridging render the tetrazines as valuable components of supramolecular materials.
机译:1,2,4,5-四嗪及其3,6-二取代衍生物表现出特殊的配位化学,其特征在于电子和电荷转移现象,以及这些富含杂原子的配体以各种方式桥接金属中心的能力。定位在四个氮原子上的非常低的π〜*轨道负责强烈的低能电荷转移吸收,配位聚合物的电导率,顺磁性自由基或混合价中间体的异常稳定性以及通常解析良好的EPR超细自由基配合物中的结构。取代的1,4-二氢-1,2,4,5-四嗪也已被用作桥连配体。电子转移的结构后果以及有效和可变的金属-金属桥连能力使四嗪成为超分子材料的重要组成部分。

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