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首页> 外文期刊>Scientific reports. >Unidirectional molecular assembly alignment on graphene enabled by nanomechanical symmetry breaking
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Unidirectional molecular assembly alignment on graphene enabled by nanomechanical symmetry breaking

机译:通过纳米机械对称断裂使得石墨烯的单向分子组装对准

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摘要

Precise fabrication of molecular assemblies on a solid surface has long been of central interest in surface science. Their perfectly oriented growth only along a desired in-plane direction, however, remains a challenge, because of the thermodynamical equivalence of multiple axis directions on a solid-surface lattice. Here we demonstrate the successful fabrication of an in-plane, unidirectional molecular assembly on graphene. Our methodology relies on nanomechanical symmetry breaking effects under atomic force microscopy tip scanning, which has never been used in molecular alignment. Individual one-dimensional (1D) molecular assemblies were aligned along a selected symmetry axis of the graphene lattice under finely-tuned scanning conditions after removing initially-adsorbed molecules. Experimental statistics and computational simulations suggest that the anisotropic tip scanning locally breaks the directional equivalence of the graphene surface, which enables nucleation of the unidirectional 1D assemblies. Our findings will open new opportunities in the molecular alignment control on various atomically flat surfaces.
机译:精确制备固体表面上的分子组件长期以来一直对表面科学的核心感兴趣。然而,它们仅沿着所需的面内方向的完美成长仍然是一个挑战,因为在实心表面晶格上的多个轴方向的热力学等效。在这里,我们证明了在石墨烯上成功地制造了平面的单向分子组件。我们的方法论依赖于原子力显微镜尖端扫描下的纳米力学对称性断裂效应,从未用于分子取向。在除去初始吸附的分子后,在细扫描条件下,沿着石墨烯晶格的选定对称轴对齐各自的一维(1D)分子组件。实验统计和计算模拟表明各向异性尖端扫描局部地破坏石墨烯表面的定向等效,这使得单向1D组件的成核。我们的调查结果将在各种原子平面上的分子对准控制中开辟新的机会。

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