立体中心
手性(物理)
共价键
圆二色性
超分子化学
化学
超分子手性
二茂铁
立体化学
结晶学
氨基酸
轴手性
对映体
材料科学
电化学
动态共价化学
氢键
组合化学
自组装
绝对构型
氧化还原
作者
Marcin Konopka,Rafał Śliwa,Marek P. Szymański,Aleksandra Tobolska,Wojciech Wróblewski,Ireneusz Tomczyk,Katarzyna Rybicka-Jasińska,Artur Kasprzak,Agnieszka Szumna
标识
DOI:10.26434/chemrxiv.15000533/v1
摘要
In this paper, we report the construction of chiral ferrocene-containing supramolecular platforms with high symmetry and well-defined geometry via dynamic covalent chemistry. Starting from amino-acid trihydrazides and ferrocene dialdehyde precursors, we obtained C₂-symmetric motifs Fc(L-1)₂ with hydrogen-bond-stabilized conformations, that display intense circular dichroism (CD) signals in the visible region associated with ferrocene-centered electronic transitions. CD and UV-Vis spectroscopy, supported by computational analysis, reveal efficient transfer of chirality from the remote stereogenic centers to the Fc unit and a robust correlation between amino acid configuration, Fc helicity, and CD sign (L-amino acid → (P)-Fc → (-)CD at 470 nm). Exploiting the dynamic character of the acylhydrazone linker, L-2 was further assembled into D₃-symmetric doubledecker trigonal platform Fc3(L-2)2 with high synthetic efficiency (>90%). Under these conditions, narcissistic chiral self-sorting occurs via dynamic covalent exchange, which results in the formation of homochiral platforms from racemic precursors. The combination of conformationally locked axial chirality, reversible covalent connectivity, and inherent redox activity establishes new amino acid-based motifs as promising modules for constructing chiral Fc-containing porous architectures such as molecular cages, MOFs, and COFs, with potential for asymmetric electrochemical applications.
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