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Engineering of linear molecular nanostructures by a hydrogen-bond-mediated modular and flexible host-guest assembly

机译:通过氢键介导的模块化和柔性主客体组装工程来构建线性分子纳米结构

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摘要

The formation of a desired nanostructure with concomitant patterns and functions is of utmost importance in the field of surface molecular engineering and nanotechnology. We here present a flexible host-guest assembly, which steers the formation of linear molecular nanostructures on surfaces by a hydrogen-bond-mediated assembly process. A linear monodendron molecular template with periodic hydrogen-bond binding sites is shown to accommodate a variety of molecules with pyridylethynyl terminals. The unit cell parameters in the transverse direction of the linear pattern can be tuned from 3.4 to 7.3 nm in response to the packing of the guest molecules with different sizes, shapes, and aggregation number. The introduction of hydrogen-bonding partners into the host template and into guest molecules is responsible for the steering of the linear pattern of guest molecules. The modular approach could greatly facilitate the ordering of guest molecules with desired functional moieties.
机译:在表面分子工程和纳米技术领域,形成具有所需图案和功能的所需纳米结构至关重要。我们在这里提出了一种灵活的主客体组装,该组装通过氢键介导的组装过程控制表面上线性分子纳米结构的形成。显示具有周期性氢键结合位点的线性单树枝分子分子模板可容纳具有吡啶基乙炔基末端的各种分子。响应于具有不同尺寸,形状和聚集数的客体分子的堆积,可以将线性图案的横向上的晶胞参数从3.4nm调节至7.3nm。将氢键键合剂引入主体模板和客体分子中负责导向客体分子的线性模式。模块化方法可以极大地促进具有所需功能部分的客体分子的排序。

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