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Self-organizing surface-initiated polymerization, templated self-sorting and templated stack exchange: synthetic methods to build complex systems

机译:自组织表面引发的聚合,模板化的自动分类和模板化的堆栈交换:构建复杂系统的合成方法

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摘要

In nature, spectacular function is achieved by highly sophisticated supramolecular architectures. Little is known what we would obtain if we could create complexity with similar precision, because the synthetic methods to do so are not available. This account summarizes recent approaches conceived to improve on this situation. With self-organizing surface-initiated polymerization (SOSIP), charge-transporting stacks can be grown directly on solid substrates with molecular-level precision. The extension to templated self-sorting (SOSIP-TSS) offers a supramolecular approach to multicomponent architectures. A solid theoretical framework for the transcription of information by templated self-sorting has been introduced, intrinsic templation efficiencies up to 97% have been achieved, and the existence of self-repair has been shown. The extension to templated stack exchange (SOSIP-TSE) offers the complementary covalent approach. Compatibility of this robust method with the creation of double-channel architectures with antiparallel two-component gradients has been demonstrated.
机译:在自然界中,高度复杂的超分子体系结构可实现惊人的功能。如果我们能够以相似的精度创建复杂性,那么我们将获得的知之甚少,因为这样做的综合方法不可用。此说明总结了旨在改善这种情况的最新方法。通过自组织的表面引发聚合(SOSIP),可以在分子水平精度的固体基质上直接生长电荷传输堆叠。模板化自排序(SOSIP-TSS)的扩展为多组件体系结构提供了一种超分子方法。引入了坚实的理论框架,用于通过模板自分类进行信息转录,已达到97%的固有模板效率,并显示了自我修复的存在。模板化堆栈交换(SOSIP-TSE)的扩展提供了互补的共价方法。已经证明了该鲁棒方法与创建具有反平行二分量梯度的双通道体系结构的兼容性。

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