三三角甲烯:合成和可逆互转化为半径 π 结合的宏环
Tomohito Ide1, Wei-Ci Huang2, Masaki Horie2
1Department of Chemical Science and Engineering, National Institute of Technology, Tokyo College, 1220-2 Kunugida-machi, Hachioji-shi, Tokyo 193-0997, Japan.
Journal of the American Chemical Society
|April 3, 2024
概括
研究人员用tris-azo组合成了新型环烯衍生物. 这些化合物具有独特的结构和光化学性质,包括热稳定的全cis形式和酸诱导的异构化到全trans形式.
科学领域:
- 有机化学
- 超分子化学
- 材料科学
背景情况:
- 环烯 (CPP) 是具有独特结构和电子性质的宏环芳.
- 基 (-N=N-) 以其光色和电化学活性而闻名.
- 将CPP与功能结合在一起,为新型光响应分子架构提供了途径.
研究的目的:
- 合成和描述包含三基的环烯衍生物.
- 研究这些新型化合物的结构,热和光化学特性.
- 探索分子形状和电子结构对它们行为的影响.
主要方法:
- 多步骤的有机合成,以构建具有三链接的环烯支架.
- 单晶X射线衍射以确定固态结构.
- 紫外线光谱和光化学实验以研究异构化.
- 密度函数理论 (DFT) 计算以分析电子属性.
主要成果:
- 用三基成功合成 [3]环二衍生物.
- 较小的衍生品呈现出一个稳定的,三角形的全晶体形状,具有Kagome图案的晶体包装.
- 双桥衍生物经过光诱导的异构化和选择性酸催化转化为全转化形式.
- DFT计算显示了形状变化 (三角形到圆形) 和电子结构修改 (HOMO增加,LUMO减少) 之间的相关性.
结论:
- 环烯的三功能化导致独特的结构和光物理性质.
- 环应变和晶体包装显著影响全cis异构体的稳定性.
- 光异构和酸诱导的转化为控制分子形状和电子特征提供了途径.
- 这些发现有助于开发具有可调节性能的新型π结合系统,用于先进的应用.
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