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首页> 外文期刊>Angewandte Chemie >2D Crystal Engineering of Nanosheets Assembled from Helical Peptide Building Blocks
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2D Crystal Engineering of Nanosheets Assembled from Helical Peptide Building Blocks

机译:由螺旋肽构建块组装的纳米片的2D水晶工程

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摘要

The successful integration of 2D nanomaterials into functional devices hinges on developing fabrication methods that afford hierarchical control across length scales of the entire assembly. We demonstrate structural control over a class of crystalline 2D nanosheets assembled from collagen triple helices. By lengthening the triple helix unit through sequential additions of Pro-Hyp-Gly triads, we achieved sub-angstrom tuning over the 2D lattice. These subtle changes influence the overall nanosheet size, which can be adjusted across the mesoscale size regime. The internal structure was observed by cryo-TEM with direct electron detection, which provides real-space high-resolution images, in which individual triple helices comprising the lattice can be clearly discerned. These results establish a general strategy for tuning the structural hierarchy of 2D nanomaterials that employ rigid, cylindrical structural units.
机译:将2D纳米材料成功集成在开发制造方法中的功能装置中的铰链,其在整个组件的长度尺度上提供分级控制的制造方法。 我们展示了一类从胶原三螺旋组装的一类晶体2D纳米片的结构控制。 通过延长三重螺旋单元通过顺序添加Pro-Hyp-Gly Triads,我们通过2D晶格进行了子宽度调整。 这些微妙的变化会影响整个纳米片尺寸,可以在Messcale大小制度上调整。 通过直接电子检测观察到内部结构,其提供实时空间高分辨率图像,其中可以清楚地辨别包含晶格的单个三螺旋。 这些结果建立了调整采用刚性,圆柱结构单元的2D纳米材料结构层次的一般策略。

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