Okazaki Takao, Laali Kenneth K
Department of Chemistry, Kent State University, Kent, OH 44242, USA.
Org Biomol Chem. 2006 Aug 21;4(16):3085-95. doi: 10.1039/b606070f. Epub 2006 Jul 14.
The utility of NICS (nuclear independent chemical shift) as a probe for detecting/sensing variation in aromaticity due to transannular pi-pi interactions in janusene , a [3.3]orthocyclophane having two cofacial benzene rings within van der Waals distance, its tetrafluoro- and octafluoro-derivatives and , and in tropiliojanusene was studied by DFT at the B3LYP/6-31G(d) level. The related hydrocarbons and with a buried double-bond and their carbocations were also included in this study. Whereas NICS(0) and NICS(1) are rather insensitive to transannular interactions, computed NICS(1)(zz), values are larger and more negative for both pi-decks in the interannular space and this is consistent with increased transannular pi-pi interactions in the cofacial rings, previously shown in these systems via spectroscopic studies (UV and NMR), and by electrophilic chemistry. Transannular effects in , , and were also probed by examining the forms of HOMO-LUMOs. Attempts to measure donor-accepter interactions between electron rich/electron poor cofacial decks via NICS (1)(zz) through substituent effects proved unsuccessful, resulting in only very small changes. Protonation of the double-bond buried in between the two pi-decks in and results in internally pi-stabilized carbocations that exhibit more negative NICS(1) and NICS(1)(zz) values in the interannular space. GIAO NMR data were computed for the neutral hydrocarbons and their derived carbocations, as a guiding tool for planned experimental studies.
在B3LYP/6 - 31G(d)水平下,通过密度泛函理论(DFT)研究了核独立化学位移(NICS)作为一种探针,用于检测/感知在并苯烯(一种[3.3]邻环环烷,在范德华距离内有两个共面苯环)、其四氟和八氟衍生物以及托普利并苯烯中,由于跨环π-π相互作用导致的芳香性变化。本研究还包括了相关的具有埋藏双键的碳氢化合物及其碳正离子。虽然NICS(0)和NICS(1)对跨环相互作用相当不敏感,但计算得到的NICS(1)(zz)值对于环间空间中的两个π层都更大且更负,这与共面环中跨环π-π相互作用的增强相一致,此前在这些体系中通过光谱研究(紫外和核磁共振)以及亲电化学已经表明了这一点。还通过研究HOMO - LUMO的形式来探究在[具体化合物1]、[具体化合物2]和[具体化合物3]中的跨环效应。试图通过取代基效应经由NICS(1)(zz)来测量富电子/贫电子共面环层之间的给体-受体相互作用,但未成功,只导致了非常小的变化。在[具体化合物4]和[具体化合物5]中,埋藏在两个π层之间的双键质子化会产生内部π稳定的碳正离子,这些碳正离子在环间空间中表现出更负的NICS(1)和NICS(1)(zz)值。计算了中性碳氢化合物及其衍生碳正离子的GIAO NMR数据,作为计划中的实验研究的指导工具。