From Helices to Crystals: Multiscale Representation of Chirality in Double-Helix Structures

化学 手性(物理) 圆二色性 结晶学 螺旋(腹足类) 晶体结构 化学物理 手征对称破缺 对称性破坏 物理 生态学 量子力学 蜗牛 Nambu–Jona Lasinio模型 生物
作者
Chong-Yang Li,Han Xu,Pei‐Ming Cheng,Ming‐Hao Du,La‐Sheng Long,Lan‐Sun Zheng,Xiang‐Jian Kong
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:145 (40): 22176-22183 被引量:17
标识
DOI:10.1021/jacs.3c08257
摘要

Single crystals with chiral shapes aroused the interest of chemists due to their fascinating polarization rotation properties. Although the formation of large-scale spiral structures is considered to be a potential factor in chiral crystals, the precise mechanism behind their formation remains elusive. Herein, we present a rare phenomenon involving the multitransfer and expression of chirality at micro-, meso-, and macroscopic levels, starting from chiral carbon atoms and extending to the double-helical secondary structure, ultimately resulting in the chiral geometry of crystals. The assembly of the chiral double helices is facilitated by the dual characteristics of amide groups derived from amino acids, which serve as both hydrogen bond donors and receptors, similar to the assembly pattern observed in DNA. Crystal face analysis and theoretical morphology reveal two critical factors for the mechanism of the chiral crystal: inherent intrinsically symmetrical distribution of crystal faces and their acquired growth. Importantly, the magnetic circular dichroism (MCD) study reveals the strong magneto-optical response of the hypersensitive f-f transition in the UV-vis-NIR region, which is much stronger than previously observed signals. Remarkably, an external magnetic field can reverse the CD signal. This research highlights the potential of lanthanide-based chiral helical structures as promising magneto-optical materials.
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