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Twisted Host–Guest Systems Exhibit Superamplification of Asymmetry via Coupled Strong Association and Helicity-Driven Cooperativity

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Figshare2026-04-28 收录
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https://figshare.com/articles/dataset/Twisted_Host_Guest_Systems_Exhibit_Superamplification_of_Asymmetry_via_Coupled_Strong_Association_and_Helicity-Driven_Cooperativity/30453698
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Chiral host–guest systems are central to applications in chiral separation, chiral sensing, and asymmetric catalysis. Chiral interactions involving multiple guest molecules exhibit three key features: helicity-driven amplification of asymmetry (i.e., chiral amplification), mutually exclusive binding, and extremely high selectivity. Coupling of amplification of asymmetry with the latter two features can lead to a phenomenon that surpasses conventional amplification of asymmetry, which we propose to term ‘superamplification of asymmetry’. Despite its potential, no established theoretical framework exists. In this work, we developed three models: a general 1:2 twisted host–guest interaction model; the 1:n model assuming independent binding events at multiple sites; and a model assuming mutually exclusive binding. These models were applied to twisted macrocycles and triple-stranded metallohelicates, offering new insights into the amplification of asymmetry mechanisms. Superamplification of asymmetry unlocks powerful new strategies for chiral separation, asymmetric catalysis, and sensing through highly cooperative molecular interactions.
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