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电生成硝基苯阴离子与二高氧杂杯[4]芳烃双齿脲之间增强识别的位点特异性描述

Site-Specific Description of the Enhanced Recognition Between Electrogenerated Nitrobenzene Anions and Dihomooxacalix[4]arene Bidentate Ureas.

作者信息

Martínez-González Eduardo, Armendáriz-Vidales Georgina, Ascenso José R, Marcos Paula M, Frontana Carlos

机构信息

†Centro de Investigación y Desarrollo Tecnológico en Electroquímica, Parque Tecnológico Querétaro Sanfandila, 76703 Sanfandila, Pedro Escobedo, Querétaro, Mexico.

‡Centro de Química Estrutural, Instituto Superior Técnico, Av. Rovisco Pais, 1049-001 Lisboa, Portugal.

出版信息

J Org Chem. 2015 May 1;80(9):4581-9. doi: 10.1021/acs.joc.5b00441. Epub 2015 Apr 13.

Abstract

Electron transfer controlled hydrogen bonding was studied for a series of nitrobenzene derivative radical anions, working as large guest anions, and substituted ureas, including dihomooxacalix[4]arene bidentate urea derivatives, in order to estimate binding constants (Kb) for the hydrogen-bonding process. Results showed enhanced Kb values for the interaction with phenyl-substituted bidentate urea, which is significantly larger than for the remaining compounds, e.g., in the case of 4-methoxynitrobenzene a 28-fold larger Kb value was obtained for the urea bearing a phenyl (Kb ∼ 6888) vs tert-butyl (Kb ∼ 247) moieties. The respective nucleophilic and electrophilic characters of the participant anion radical and urea hosts were parametrized with global and local electrodonating (ω(-)) and electroaccepting (ω(+)) powers, derived from DFT calculations. ω(-) data were useful for describing trends in structure–activity relationships when comparing nitrobenzene radical anions. However, ω(+) for the host urea structures lead to unreliable explanations of the experimental data. For the latter case, local descriptors ωk(+)(r) were estimated for the atoms within the urea region in the hosts [∑kωk(+)(r)]. By compiling all the theoretical and experimental data, a Kb-predictive contour plot was built considering ω(-) for the studied anion radicals and ∑kωk(+)(r) which affords good estimations.

摘要

为了估算氢键过程的结合常数(Kb),对一系列作为大型客体阴离子的硝基苯衍生物自由基阴离子与包括二高氧杂杯[4]芳烃双齿脲衍生物在内的取代脲进行了电子转移控制的氢键研究。结果表明,与苯基取代的双齿脲相互作用时Kb值增强,该值明显大于其余化合物,例如,对于4-甲氧基硝基苯,带有苯基的脲(Kb ∼ 6888)与带有叔丁基的脲(Kb ∼ 247)相比,Kb值大28倍。参与的阴离子自由基和脲主体的各自亲核和亲电特性通过源自密度泛函理论(DFT)计算的全局和局部给电子(ω(-))和吸电子(ω(+))能力进行参数化。当比较硝基苯自由基阴离子时,ω(-)数据可用于描述构效关系的趋势。然而,主体脲结构的ω(+)导致对实验数据的解释不可靠。对于后一种情况,对主体中脲区域内的原子估计局部描述符ωk(+)(r) [∑kωk(+)(r)]。通过汇总所有理论和实验数据,构建了一个Kb预测等高线图,该图考虑了所研究阴离子自由基的ω(-)和∑kωk(+)(r),能提供良好的估计。

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