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首页> 外文期刊>ACS Central Science >Cooperative Self-Assembly Driven by Multiple Noncovalent Interactions: Investigating Molecular Origin and Reassessing Characterization
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Cooperative Self-Assembly Driven by Multiple Noncovalent Interactions: Investigating Molecular Origin and Reassessing Characterization

机译:由多种非共价相互作用驱动的合作自组装:研究分子来源和重新评估表征

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摘要

Cooperative interactions play a pivotal role in programmable supramolecular assembly. Emerging from a complex interplay of multiple noncovalent interactions, achieving cooperativity has largely relied on empirical knowledge. Its development as a rational design tool in molecular self-assembly requires a detailed characterization of the underlying interactions, which has hitherto been a challenge for assemblies that lack long-range order. We employ extensive one- and two-dimensional magic-angle-spinning (MAS) solid-state NMR spectroscopy to elucidate key structure-directing interactions in cooperatively bound aggregates of a perylene bisimide (PBI) chromophore. Analysis of 1 H– 13 C cross-polarization heteronuclear correlation (CP-HETCOR) and 1 H– 1 H double-quantum single-quantum (DQ-SQ) correlation spectra allow the identification of through-space 1 H··· 13 C and 1 H··· 1 H proximities in the assembled state and reveals the nature of molecular organization in the solid aggregates. Emergence of cooperativity from the synergistic interaction between a stronger π-stacking and a weaker interstack hydrogen-bonding is elucidated. Finally, using a combination of optical absorption, circular dichroism, and high-resolution MAS NMR spectroscopy based titration experiments, we investigate the anomalous solvent-induced disassembly of aggregates. Our results highlight the disparity between two well-established approaches of characterizing cooperativity, using thermal and good solvent-induced disassembly. The anomaly is explained by elucidating the difference between two disassembly pathways.
机译:合作互动在可编程的超分子组件中发挥关键作用。从多重非价相互作用的复杂相互作用中出现,实现合作效应在很大程度上依赖于经验知识。它作为分子自组装中的理性设计工具的发展需要详细表征潜在的相互作用,其迄今为止对缺乏远程顺序的组件是一个挑战。我们采用广泛的单一和二维魔法角旋转(MAS)固态NMR光谱,以阐明Perlenney齐酰基(PBI)发色团的协同结合聚集体中的关键结构引导相互作用。 1 H-13 C交叉偏振异核相关(CP-HETCOR)和1 H-1 H双量子单量子(DQ-SQ)相关谱分析允许识别通过空间1 H···13 C.在组装状态下1小时,1小时,揭示固体聚集体中分子组织的性质。阐明了较强π堆叠之间的协同相互作用和较弱的间隙氢键之间的合作效应的出现。最后,使用光学吸收,圆形二色性和高分辨率MAS NMR光谱的组合,我们研究了异常溶剂诱导的聚集体拆卸。我们的结果突出了两种既定的特征合作方法的差距,使用热和良好的溶剂诱导的拆卸。通过阐明两种拆卸途径之间的差异来解释异常。

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