利用 (-C-H···C-) 相互作用来设计具有功能性的有机超级数据库和超级数据库:一项计算研究
Anusuya Saha1,2, Bishwajit Ganguly1,2
1Computation and Simulation Unit, Analytical and Environmental Science Division and Centralized Instrument Facility, CSIR-Central Salt & Marine Chemicals Research Institute, Bhavnagar, Gujarat 364002, India.
ACS omega
|October 23, 2023
概括
计算研究揭示了新的基于碳的P-化物超基. 这些分子由于独特的C-H··C相互作用而表现出增强的基本性,为超基设计提供了新的途径.
科学领域:
- 计算化学计算化学
- 有机化学 有机化学
- 超分子化学 超分子化学
背景情况:
- 化物化合物以其独特的化学特性而闻名.
- 五环[5.4.0.02,6.03,10.05,9] (PCU) 和五环[6.4.0.02,7.03,11.06,10] (PCD) 支架提供了刚性,复杂的框架.
研究的目的:
- 为了计算地研究基于碳中心的P-化物替代基.
- 评估PCU和PCD支架上的P-化物基本性和相互作用机制.
主要方法:
- 密度函数理论 (DFT) 使用B3LYP-D3/6-311+G(d,p) 理论水平进行计算.
- 分析质子亲和力,分子中的原子 (AIM) 和自然键轨道 (NBO) 计算.
- 研究同体反应以了解能量贡献.
主要成果:
- 计算出的质子亲和度表明了超基和超基的特征.
- 内分子 -C-H··C- 相互作用显著增强了基本性.
- 在替代PCD和PCU系统中观察到的低自由激活能对质子交换.
- -C-H··C-相互作用与传统的 -N-H··N-键相比较.
结论:
- 研究的P-化物系统代表了强大的超基.
- 基本性可以通过修改分子内 -C-H··C-相互作用来调整.
- 超基本性源于环应变,固体排斥和有利的分子内相互作用的结合.
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