Lu Wenxin, Yang Huifang, Li Xinyao, Wang Chiming, Zhan Xiaopeng, Qi Dongdong, Bian Yongzhong, Jiang Jianzhuang
Beijing Key Laboratory for Science and Application of Functional Molecular and Crystalline Materials, Department of Chemistry, University of Science and Technology Beijing , Beijing 100083, China.
Inorg Chem. 2017 Jul 17;56(14):8223-8231. doi: 10.1021/acs.inorgchem.7b00920. Epub 2017 Jun 24.
A pair of 1,1'-binaphthalene-bridged bisporphyrins, (R)- and (S)-H1, were designed to examine their chiral discrimination abilities toward a range of model diamines by using UV-vis absorption, CD, and H NMR spectroscopy with the assistance of DFT molecular modeling. The spectroscopic titrations revealed that (R)-/(S)-H1 could encapsulate (R)-/(S)-DACH and (R)-/(S)-PPDA in the chiral bisporphyrin cavities, leading to the selective formation of sandwich-type 1:1 complexes via dual Zn-N coordination interactions. In particular, the chiral recognition energy (ΔΔG°) toward (R)-/(S)-DACH was evaluated to be -4.02 kJ mol. The binding processes afforded sensitive CD spectral changes in response to the stereostructure of chiral diamines. Remarkable enantiodiscrimination effects were also detected in the NMR titrations of (R)-/(S)-H1, in which the nonequivalent chemical shift (ΔΔδ) can reach up to 0.57 ppm for (R)-/(S)-DACH. However, due to the large steric effect, another chiral diamine ((R)-/(S)-DPEA) could not be sandwiched in the chiral bisporphyrin cavity; therefore, (R)-/(S)-DPEA could hardly be discriminated by (R)-/(S)-H1. The present results demonstrate a chiral bisporphyrin host with integrated CD and NMR chiral sensing functions and also highlight the binding-mode-dependent character of its enantiodiscrimination performance for different chiral guests.
设计了一对1,1'-联萘桥连的双卟啉(R)-和(S)-H1,通过紫外-可见吸收光谱、圆二色光谱(CD)和核磁共振氢谱(H NMR),并借助密度泛函理论(DFT)分子建模,研究它们对一系列模型二胺的手性识别能力。光谱滴定表明,(R)-/(S)-H1可以将(R)-/(S)-1,2-二氨基环己烷(DACH)和(R)-/(S)-1,2-双(4-吡啶基)乙烷(PPDA)包封在双卟啉手性空腔中,通过双锌-氮配位相互作用选择性地形成夹心型1:1配合物。特别是,对(R)-/(S)-DACH的手性识别能(ΔΔG°)经评估为-4.02 kJ/mol。结合过程对手性二胺的立体结构产生了灵敏的CD光谱变化。在(R)-/(S)-H1的核磁共振滴定中也检测到了显著的对映体识别效应,其中(R)-/(S)-DACH的非对映化学位移(ΔΔδ)可达0.57 ppm。然而,由于空间位阻较大,另一种手性二胺((R)-/(S)-N,N'-二苯基乙二胺(DPEA))无法夹在双卟啉手性空腔中;因此,(R)-/(S)-H1很难区分(R)-/(S)-DPEA。目前的结果证明了一种具有集成CD和NMR手性传感功能的双卟啉主体,也突出了其对不同手性客体的对映体识别性能的结合模式依赖性特征。