超分子化学
对映体药物
超分子手性
化学
荧光
手性(物理)
氨基酸
结晶学
晶体结构
立体化学
材料科学
有机化学
催化作用
手征对称破缺
生物化学
对映选择合成
量子力学
物理
Nambu–Jona Lasinio模型
夸克
作者
Wei Ji,Bin Xue,Santu Bera,Sarah Guerin,Linda J. W. Shimon,Qing Ma,Syed A. M. Tofail,Damien Thompson,Yi Cao,Wei Wang,Ehud Gazit
标识
DOI:10.1016/j.mattod.2020.10.007
摘要
Amino acid chirality plays an important role in conveying directionality and specificity to their supramolecular organization. However, the impact of enantiopure and racemic amino acids on the favorable packing and macroscopic properties of organic cocrystals with nonchiral coformers is poorly understood. Herein, we performed a systematic study of the effect of chirality on the macroscopic properties of acetylated alanine (AcA) single crystals and cocrystals with a nonchiral photo-sensitive bipyridine derivative (BPE). Cocrystallization with BPE produced a marked morphology transition that improved the supramolecular chirality, thermal stability and mechanical strength of AcA crystals. The distinct supramolecular packing modes were analyzed by X-ray crystallography. The highest rigidity was observed for BPE/dl-AcA, while BPE/d-AcA and BPE/l-AcA crystals exhibited higher efficiency of photo-induced emission for fluorescent imprinting, as well as significantly higher piezoelectricity. This work provides a striking illustration that subtle differences in amino acid stereochemistry translate into tunable macroscopic properties of organic cocrystals for future applications in rigid solids, fluorescent imprinting, and energy harvesting.
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