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内酰胺、内酯和硫内酯衍生的亚烷基卡宾的环扩张成刚性杂环炔烃:理论研究。

Ring Expansion of Alkylidenecarbenes Derived from Lactams, Lactones, and Thiolactones into Strained Heterocyclic Alkynes: A Theoretical Study.

机构信息

Department of Chemistry, Colby College, Waterville, ME 04901, USA.

Department of Chemistry and Biochemistry, Swarthmore College, 500 College Avenue, Swarthmore, PA 19081, USA.

出版信息

Molecules. 2019 Feb 7;24(3):593. doi: 10.3390/molecules24030593.

Abstract

Strained cycloalkynes are of considerable interest to theoreticians and experimentalists, and possess much synthetic value as well. Herein, a series of cyclic alkylidenecarbenes-formally obtained by replacing the carbonyl oxygen of four-, five-, and six-membered lactams, lactones, and thiolactones with a divalent carbon-were modeled at the CCSD(T)/cc-pVTZ//B3LYP/6-311+G** and CCSD(T)/cc-pVTZ//CCSD/6-311+G** levels of theory. The singlet carbenes were found to be more stable than the triplets. The strained heterocyclic alkynes formed by ring expansion of these singlet carbenes were also modeled. Interestingly, the C≡C bonds in the five-membered heterocycles, obtained from the rearrangement of β-lactam- and β-lactone-derived alkylidenecarbenes, displayed lengths intermediate between formal double and triple bonds. Furthermore, 2-(1-azacyclobutylidene)carbene was found to be nearly isoenergetic with its ring-expanded isomer, and 1-oxacyclopent-2-yne was notably higher in energy than its precursor carbene. In all other cases, the cycloalkynes were lower in energy than the corresponding carbenes. The transition states for ring-expansion were always lower for the 1,2-carbon shifts than for 1,2-nitrogen or oxygen shifts, but higher than for the 1,2-sulfur shifts. These predictions should be verifiable using carbenes bearing appropriate isotopic labels. Computed vibrational spectra for the carbenes, and their ring-expanded isomers, are presented and could be of value to matrix isolation experiments.

摘要

张力环炔烃引起了理论家和实验家的浓厚兴趣,并且具有很大的合成价值。在此,通过用二价碳取代四、五和六元内酰胺、内脂和硫内脂的羰基氧,形成了一系列的环状亚烷基卡宾,在 CCSD(T)/cc-pVTZ//B3LYP/6-311+G** 和 CCSD(T)/cc-pVTZ//CCSD/6-311+G** 理论水平下对其进行了模拟。单重态卡宾比三重态卡宾更稳定。通过这些单重态卡宾的环扩张形成的张力杂环炔烃也进行了模拟。有趣的是,从β-内酰胺和β-内脂衍生的亚烷基卡宾重排得到的五元杂环中的 C≡C 键,其长度介于典型的双键和叁键之间。此外,2-(1-氮杂环丁基)卡宾与其环扩张的异构体几乎等能,而 1-氧杂环戊-2-炔的能量明显高于其前体卡宾。在所有其他情况下,环炔烃的能量都低于相应的卡宾。环扩张的过渡态对于 1,2-碳迁移总是比 1,2-氮或氧迁移低,但比 1,2-硫迁移高。使用带有适当同位素标记的卡宾应该可以验证这些预测。提出了卡宾及其环扩张异构体的计算振动光谱,这对基质隔离实验可能具有重要价值。

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