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Analysis of the magnetically induced current density of molecules consisting of annelated aromatic and antiaromatic hydrocarbon rings

机译:分析由芳族和抗芳族烃环退火形成的分子的磁感应电流密度

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摘要

Magnetically induced current susceptibilities and current pathways have been calculated for molecules consisting of two pentalene groups annelated with a benzene (1) or naphthalene (2) moiety. Current strength susceptibilities have been obtained by numerically integrating separately the diatropic and paratropic contributions to the current flow passing planes through chosen bonds of the molecules. The current density calculations provide novel and unambiguous current pathways for the unusual molecules with annelated aromatic and antiaromatic hydrocarbon moieties. The calculations show that the benzene and naphthalene moieties annelated with two pentalene units as in molecules 1 and 2, respectively, are unexpectedly antiaromatic sustaining only a local paratropic ring current around the ring, whereas a weak diatropic current flows around the C-H moiety of the benzene ring. For 1 and 2, the individual five-membered rings of the pentalenes are antiaromatic and a slightly weaker semilocal paratropic current flows around the two pentalene rings. Molecules 1 and 2 do not sustain any net global ring current. The naphthalene moiety of the molecule consisting of a naphthalene annelated with two pentalene units (3) does not sustain any strong ring current that is typical for naphthalene. Instead, half of the diatropic current passing the naphthalene moiety forms a zig-zag pattern along the C-C bonds of the naphthalene moiety that are not shared with the pentalene moieties and one third of the current continues around the whole molecule partially cancelling the very strong paratropic semilocal ring current of the pentalenes. For molecule 3, the pentalene moieties and the individual five-membered rings of the pentalenes are more antiaromatic than for 1 and 2. The calculated current patterns elucidate why the compounds with formally [4n + 2] p-electrons have unusual aromatic properties violating the Huckel pi-electron count rule. The current density calculations also provide valuable information for interpreting the measured H-1 NMR spectra.
机译:已计算出由两个戊基与苯(1)或萘(2)部分退火而成的分子的磁感应电流敏感性和电流路径。电流强度敏感性是通过分别对通过分子的选定键对通过平面的电流流动的透热和副热贡献进行数值积分而获得的。电流密度计算为带有芳族和抗芳族烃基退火的不寻常分子提供了新颖而明确的电流路径。计算表明,分别与两个戊烯单元(如分子1和2)中的苯和萘部分退火,它们出人意料地抗芳族化,仅在环周围维持局部副向性环电流,而弱的易变径电流在苯的CH部分周围流动环。对于1和2,戊烯的单个五元环是抗芳香族的,并且在两个戊烯环周围流动的半局部副向性电流稍弱。分子1和2不承受任何净全局环电流。由与两个戊烯单元(3)退火的萘组成的分子中的萘部分不承受任何萘典型的强环电流。取而代之的是,一半的通过萘部分的变通电流沿着萘部分的CC键形成锯齿形,这些模式与戊烯部分不共享,并且三分之一的电流继续围绕整个分子,从而部分抵消了非常强的顺性五碳烯的半局部环电流。对于分子3,戊烯部分和戊烯的单个五元环比1和2具有更强的芳香性。计算得出的电流模式阐明了为什么具有[4n + 2]对电子的化合物具有异常的芳族特性而违反了Huckel pi电子计数规则。电流密度计算还为解释测得的H-1 NMR光谱提供了有价值的信息。

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