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首页> 外文期刊>The Journal of Organic Chemistry >Effects of Halogen and Hydrogen Bonding on the Electronics of a Conjugated Rotor
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Effects of Halogen and Hydrogen Bonding on the Electronics of a Conjugated Rotor

机译:卤素和氢键在共轭转子电子元件上的影响

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摘要

The electronic properties of a pyrazine-containing arylene ethynylene unit are influenced by hydrogen bond and halogen bond donors that are held in proximity of the pyrazine rotor. These interactions are evident with iodine- and bromine-centered halogen bonds and O-H- and C-H-based hydrogen bonds. Bathochromic shifts of UV vis and fluorescence signals are the best indicators of this intramolecular attraction. The effects can be attenuated in solvents that are less favorable for intramolecular halogen or hydrogen bonding, such as 2-propanol, and amplified in solvents that are supportive, such as toluene. Intramolecular attractions promote planarity in the pyrazine ethynylene system, likely increasing the effective conjugation of the unsaturated backbone. Additionally, computations at the B3LYP and M062X levels of theory using 6-311++G(2d,p) and aug-cc-pVTZ basis sets suggest that the Lewis acidity of the halogen and hydrogen atoms influences electronic behavior even in the absence of conformational constraints.
机译:含吡嗪亚芳基乙炔醚单元的电子性质受氢键和卤素键供体的影响,所述氢键和卤素键合供体在吡嗪转子附近。这些相互作用与碘和溴 - 中心的卤素键和基于O-H-和C-H基氢键明显。 UV VI和荧光信号的游泳偏移是该分子内吸引力的最佳指标。这些效果可以衰减在对分子内卤素或氢粘合的溶剂中的溶剂,例如2-丙醇,并在载体的溶剂中扩增,例如甲苯。分子内吸引力促进了吡嗪乙炔基系统的平面性,可能增加了不饱和骨干的有效缀合。另外,使用6-311 ++ g(2D,P)和Aug-CC-PVTZ基本组的B3LYP和M062X理论水平的计算表明,即使在没有的情况下,卤素和氢原子的路易斯酸度也影响电子行为构象约束。

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