Rearrangement Reactions of Tritylcarbenes: Surprising Ring Expansion and Computational Investigation

被引:9
|
作者
Banert, Klaus [1 ]
Hagedorn, Manfred [1 ]
Pester, Tom [1 ]
Siebert, Nicole [1 ]
Staude, Cornelius [1 ]
Tchernook, Ivan [2 ]
Rathmann, Katharina [2 ]
Holloczki, Oldamur [3 ]
Friedrich, Joachim [2 ]
机构
[1] Tech Univ Chemnitz, Organ Chem, D-09111 Chemnitz, Germany
[2] Tech Univ Chemnitz, Theoret Chem, D-09111 Chemnitz, Germany
[3] Univ Bonn, Mulliken Ctr Theoret Chem, Inst Phys & Theoret Chem, D-53115 Bonn, Germany
关键词
azidoacetylenes; carbenes; density functional calculations; reactive intermediates; rearrangement; ZETA-VALENCE QUALITY; GAUSSIAN-BASIS SETS; CORRELATION-ENERGY; NUCLEOPHILIC-ATTACK; DIAZO-COMPOUNDS; AB-INITIO; ACCURATE; DECOMPOSITION; DYNAMICS; AZIDES;
D O I
10.1002/chem.201501352
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
As a rule, acetylides and sulfonyl azides do not undergo electrophilic azide transfer because 1,2,3-triazoles are usually formed. We show now that treatment of tritylethyne with butyllithium followed by exposure to 2,4,6-triisopropylbenzenesulfonyl azide leads to products that are easily explained through the generation of short-lived tritylethynyl azide and its secondary product cyanotritylcarbene. Furthermore, it is demonstrated that tritylcarbenes generally do not produce triphenylethenes exclusively, as was stated in the literature. Instead, these carbenes always yielded also (diphe-nylmethylidene) cycloheptatrienes (heptafulvenes) as side products. This result is supported by static DFT, coupled cluster, and ab initio molecular dynamics calculations. From these investigations, the fused bicyclobutane intermediate was found to be essential for heptafulvene formation. Although the bicyclobutane is also capable of rearranging to the triphenylethene product, only the heptafulvene pathway is reasonable from the energetics. The ethene is formed straight from cyanotritylcarbene.
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页码:14911 / 14923
页数:13
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