Key Laboratory of Medical Electrophysiology, Ministry of Education, School of Pharmacy of Southwest Medical University, Luzhou 646000, China.
Department of Chemistry, University of Virginia, Charlottesville, Virginia 22904-4319, United States.
Inorg Chem. 2020 Dec 21;59(24):17992-17998. doi: 10.1021/acs.inorgchem.0c02330. Epub 2020 Nov 2.
A pyridine containing BINOL-based aldehyde ()- or ()- is found to show highly enantioselective fluorescent response toward phenylglycinol in the presence of Zn. A chirality matched dimeric BINOL-imine-Zn(II) complex is isolated from the reaction of ()- with l-phenylglycinol and Zn whose structure is established by X-ray analysis. Comparison of the structure of this SS-complex with a molecular modeling structure of the chirality mismatched SR-complex generated from the reaction of ()- with d-phenylglycinol has provided important insight into the origin of the observed highly enantioselective fluorescent response. It is found that the solvent-accessible surface area of the chirality-matched SS-complex is much smaller than that of the chirality mismatched SR-complex, which gives the more tightly packed and structurally rigid SS-complex with greatly enhanced fluorescence.
一种含有吡啶的联二萘酚基醛 ()-或 ()-在 Zn 的存在下对苯甘氨醇表现出高度对映选择性的荧光响应。从 ()-与 l-苯甘氨醇和 Zn 的反应中分离出结构通过 X 射线分析确定的手性匹配的二聚联二萘酚-亚胺-Zn(II)配合物。通过比较 SS-配合物与 ()-与 d-苯甘氨醇反应生成的手性错配 SR-配合物的分子建模结构,深入了解了观察到的高度对映选择性荧光响应的起源。结果发现,手性匹配的 SS-配合物的可及表面积远小于手性错配的 SR-配合物,这使得 SS-配合物更加紧密堆积,结构更加刚性,荧光强度大大增强。