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Paradigm shift from self-assembly to commanded assembly of functional materials: recent examples in porphyrin/fullerene supramolecular systems

机译:范式从功能材料的自组装转变为命令组装:卟啉/富勒烯超分子系统的最新例子

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摘要

Current nanotechnology based on top-down nanofabrication may encounter a variety of drawbacks in the near future so that development of alternative methods, including the so-called bottom-up approach, has attracted considerable attention. However, the bottom-up strategy, which often relies on spontaneous self-assembly, might be inefficient in the development of the requisite functional materials and systems. Therefore, assembly processes controlled by external stimuli might be a plausible strategy for the development of bottom-up nanotechnology. In this review, we demonstrate a paradigm shift from self-assembly to commanded assembly by describing several examples of assemblies of typical functional molecules, i.e. porphyrins and fullerenes. In the first section, we describe recent progress in the design and study of self-assembled and co-assembled supramolecular architectures of porphyrins and fullerenes. Then, we show examples of assembly induced by external stimuli. We emphasize the paradigm shift from self-assembly to commanded assembly by describing the recently developed electrochemical-coupling layer-by-layer (ECC-LbL) methodology.
机译:当前基于自上而下的纳米加工的纳米技术在不久的将来可能会遇到各种弊端,因此替代方法的开发,包括所谓的自下而上的方法,已引起了广泛的关注。但是,自下而上的策略通常依赖于自发的自组装,在开发必需的功能材料和系统时可能效率不高。因此,由外部刺激控制的组装过程可能是自下而上的纳米技术发展的合理策略。在这篇综述中,我们通过描述典型功能分子(即卟啉和富勒烯)的几个组装实例来证明从自组装到指令组装的范式转变。在第一部分中,我们描述了卟啉和富勒烯自组装和共组装的超分子结构的设计和研究的最新进展。然后,我们展示了由外部刺激引起的装配的例子。通过描述最近开发的逐层电化学耦合(ECC-LbL)方法,我们强调了从自组装到命令组装的范式转变。

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