Zubarev Dmitry Yu, Averkiev Boris B, Zhai Hua-Jin, Wang Lai-Sheng, Boldyrev Alexander I
Department of Chemistry and Biochemistry, Utah State University, Logan, UT 84322, USA.
Phys Chem Chem Phys. 2008 Jan 14;10(2):257-67. doi: 10.1039/b713646c. Epub 2007 Nov 5.
Aromaticity is an important concept in chemistry primarily for organic compounds, but it has been extended to compounds containing transition-metal atoms. Recent findings of aromaticity and antiaromaticity in all-metal clusters have stimulated further research in describing the chemical bonding, structures and stability in transition-metal clusters and compounds on the basis of aromaticity and antiaromaticity, which are reviewed here. The presence of d-orbitals endows much more diverse chemistry, structure and chemical bonding to transition-metal clusters and compounds. One interesting feature is the existence of a new type of aromaticity-delta-aromaticity, in addition to sigma- and pi-aromaticity which are the only possible types for main-group compounds. Another striking characteristic in the chemical bonding of transition-metal systems is the multi-fold nature of aromaticity, antiaromaticity or even conflicting aromaticity. Separate sets of counting rules have been proposed for cyclic transition-metal systems to account for the three types of sigma-, pi- and delta-aromaticity/antiaromaticity. The diverse transition-metal clusters and compounds reviewed here indicate that multiple aromaticity and antiaromaticity may be much more common in chemistry than one would anticipate. It is hoped that the current review will stimulate interest in further understanding the structure and bonding, on the basis of aromaticity and antiaromaticity, of other known or unknown transition-metal systems, such as the active sites of enzymes or other biomolecules which contain transition-metal atoms and clusters.
芳香性是化学中的一个重要概念,主要适用于有机化合物,但现已扩展到含过渡金属原子的化合物。全金属簇合物中芳香性和反芳香性的最新发现激发了人们基于芳香性和反芳香性来描述过渡金属簇合物及化合物的化学键、结构和稳定性的进一步研究,本文对此进行综述。d轨道的存在赋予过渡金属簇合物及化合物更多样化的化学性质、结构和化学键。一个有趣的特点是,除了主族化合物仅有的σ-芳香性和π-芳香性之外,还存在一种新型芳香性——δ-芳香性。过渡金属体系化学键的另一个显著特征是芳香性、反芳香性甚至相互冲突的芳香性具有多重性质。针对环状过渡金属体系,已经提出了不同的计数规则来解释σ-、π-和δ-芳香性/反芳香性这三种类型。本文综述的各种过渡金属簇合物及化合物表明,多重芳香性和反芳香性在化学中可能比人们预期的更为常见。希望当前的综述能激发人们进一步基于芳香性和反芳香性来理解其他已知或未知过渡金属体系的结构和键合,比如含有过渡金属原子和簇合物的酶或其他生物分子的活性位点。