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An isomeric study of N-5(+), N-5, and N-5(-): a Gaussian-3 investigation

机译:N-5(+),N-5和N-5(-)的同分异构研究:高斯3研究

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An isomeric study for N-5, N-5(+), and N-5(-) has been carried out using the Gaussian-3 (G3) method. At the MP2(FU)/6-31G(d) level, six N-5, five N-5(+) and four N-5(-) isomers are identified. Of these 15 species, 12 of them have not been reported previously. The most stable N-5 isomer is a weak N-2...N-3 complex with C-2v symmetry, while the most stable N-5(-) isomer is also a weak N-2...N-3(-) complex with the same symmetry. The most stable species for N-5(+) has an open-chain structure with C-2v symmetry, which has been synthesized and characterized spectroscopically. Natural bond orbital (NBO) analysis suggests that the stability of this cation is enhanced by hyperconjugation. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 16]
机译:已经使用高斯3(G3)方法对N-5,N-5(+)和N-5(-)进行了异构研究。在MP2(FU)/ 6-31G(d)水平上,鉴定出六个N-5,五个N-5(+)和四个N-5(-)异构体。在这15个物种中,其中12个以前未曾报告过。最稳定的N-5异构体是具有C-2v对称性的弱N-2 ... N-3络合物,而最稳定的N-5(-)异构体也是弱N-2 ... N-3 (-)具有相同的对称性。 N-5(+)最稳定的物种具有C-2v对称性的开链结构,该结构已通过光谱合成和表征。天然键轨道(NBO)分析表明,超共轭可增强阳离子的稳定性。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:16]

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