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周环取代稳定的磷亚基-磷杂环戊二烯的反应活性概况:合成、结构及计算研究

Reactivity profile of a peri-substitution-stabilized phosphanylidene-phosphorane: synthetic, structural, and computational studies.

作者信息

Surgenor Brian A, Chalmers Brian A, Athukorala Arachchige Kasun S, Slawin Alexandra M Z, Woollins J Derek, Bühl Michael, Kilian Petr

机构信息

School of Chemistry, EaStChem, University of St Andrews , Fife, KY16 9ST, United Kingdom.

出版信息

Inorg Chem. 2014 Jul 7;53(13):6856-66. doi: 10.1021/ic500697m. Epub 2014 Jun 9.

Abstract

The reactions of peri-substitution-stabilized phosphanylidene-phosphorane 1 with [AuCl(tht)] or [PtCl2(cod)] afford binuclear complexes [((1)(AuCl)2)2] 2 and [((1)(PtCl2))2] 3, in which four electrons of the ligand are used in bonding to two metal atoms in the bridging arrangement. Reactions of 1 with [Mo(CO)4(nbd)] or (RhCl2Cp*)2 afford mononuclear complexes [(1)2Mo(CO)4] 4 and [(1)RhCl2Cp*] 5, in which two electrons of the ligand are used to form terminal complexes. Formation of these complexes disrupts the negative hyperconjugation at the P-P bond to various extents, which is mirrored by variations in their P-P bond distances (2.179(4)-2.246(4) Å). The P-P bond is ruptured upon formation of Pd diphosphene complex 6, which is likely to proceed through a phosphinidene intermediate. In air, 1 is fully oxidized to phosphonic acid 7. Reactions of 1 with chalcogens under mild conditions generally afford mixtures of products, from which the trithionated 8, dithionated 9, diselenated 10, and monotellurated 11 species were isolated. The bonding in the chalcogeno derivatives is discussed using DFT (B3LYP) and natural bond orbital analysis, which indicate a contribution from dative bonding in 8-10. The buttressing effect of the peri backbone is shown to be an essential factor in the formation of the single push-double-pull bis(borane) 13. This is demonstrated experimentally through a synthesis parallel to that used to make 13, but lacking the backbone, which leads to different products. The P-P bond distances in the reported products, as well as additional species, are correlated with Wiberg bond indices, showing very good agreement for a variety of bonding modes, including the negative hyperconjugation.

摘要

邻位取代稳定的磷亚基 - 磷杂环戊二烯1与[AuCl(tht)]或[PtCl2(cod)]反应生成双核配合物[((1)(AuCl)2)2] 2和[((1)(PtCl2))2] 3,其中配体的四个电子用于以桥连方式与两个金属原子键合。1与[Mo(CO)4(nbd)]或(RhCl2Cp*)2反应生成单核配合物[(1)2Mo(CO)4] 4和[(1)RhCl2Cp*] 5,其中配体的两个电子用于形成端基配合物。这些配合物的形成在不同程度上破坏了P - P键处的负超共轭,这通过它们P - P键距离的变化(2.179(4) - 2.246(4) Å)反映出来。在形成钯双膦配合物6时P - P键断裂,这可能通过磷烯中间体进行。在空气中,1完全氧化为膦酸7。1在温和条件下与硫族元素反应通常得到产物混合物,从中分离出三硫化的8、二硫化的9、二硒化的10和单碲化的11物种。使用密度泛函理论(B3LYP)和自然键轨道分析讨论了硫族元素衍生物中的键合,结果表明8 - 10中存在配位键的贡献。邻位主链的支撑作用被证明是形成单推 - 双拉双(硼烷)13的关键因素。通过与用于制备13但缺少主链的合成方法平行的实验证明了这一点,该方法导致了不同的产物。报道产物以及其他物种中的P - P键距离与维伯格键指数相关,对于包括负超共轭在内的各种键合模式显示出非常好的一致性。

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