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A model for the controlled assembly of semiconductor peptides

机译:组装控制的模型半导体肽

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摘要

The self-assembly of small molecules provides a potentially powerful method to create functional nanomaterials for many applications ranging from optoelectronics to oncology. However, the design of well-defined nanostructures via molecular assembly is a highly empirical process, which severely hampers efforts to create functional nanostructures using this method. In this review, we describe a simple strategy to control the assembly of functionalized peptides by balancing attractive hydrophobic effects that drive assembly with opposing electrostatic repulsions. Extended π-π contacts are created in the nanostructures when assembly is driven by π-stacking interactions among chromophores that are appended to the peptide. The formation of insoluble P-sheet aggregates are mitigated by incorporating charged side-chains capable of attenuating the assembly process. Although the application of this approach to the assembly of organic semiconductors is described, we expect this strategy to be effective for many other functional organic materials.
机译:小分子的自组装提供了可能创建功能强大的方法从纳米材料对许多应用程序光电子学肿瘤。通过分子定义良好的纳米结构装配是一个高度经验的过程,严重阻碍努力创建功能纳米结构使用这种方法。我们描述一个简单的控制策略装配功能肽的平衡有吸引力的疏水效应驱动组装与反对,静电斥力。扩展的π-π联系人创建的当组装是由纳米结构π堆积相互作用生色团附加到肽。不溶性P-sheet骨料所减轻将侧链的能力衰减的组装过程。应用这种方法的组装有机半导体,我们期望这对许多其他的策略是有效的功能性有机材料。

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