Lu Jiayi, Jiang Hao, Yan Yuyi, Zhu Zhiwen, Zheng Fengru, Sun Qiang
Materials Genome Institute, Shanghai University, 200444 Shanghai, China.
ACS Nano. 2022 Aug 23;16(8):13160-13167. doi: 10.1021/acsnano.2c06294. Epub 2022 Jul 21.
One of the contemporary challenges in materials science lies in the rapid materials screening and discovery. Experimental sample libraries can be generated by high-throughput parallel synthesis to map the composition space for rapid material discoveries. Molecular self-assembly on surfaces has proved a useful way to construct nanostructures with interesting topologies or properties. Despite the strong dependence of molecular stoichiometry on the structures, high-throughput preparations of supramolecular surface nanostructures have been far less explored. Here, by integrating a physical mask into the standard ultra-high-vacuum (UHV) molecular preparation system we show a high-throughput approach for preparing supramolecular nanostructures of continuous composition spreads on metal surfaces. The spatially addressable sample libraries of supramolecular self-assemblies are characterized by high-resolution scanning probe microscopy. We could explore different binary nanostructures of varying molecular ratios on one single substrate. Moreover, we use the minimum spanning tree approach to qualitatively and quantitatively study the structural properties of the formed nanostructures. This high-throughput approach may accelerate the screening and exploration of surface-supported, low-dimensional nanostructures not limited to supramolecular interactions.
材料科学的当代挑战之一在于快速的材料筛选和发现。可以通过高通量平行合成生成实验样品库,以绘制组成空间图谱,实现快速的材料发现。表面上的分子自组装已被证明是构建具有有趣拓扑结构或性质的纳米结构的有用方法。尽管分子化学计量对结构有很强的依赖性,但超分子表面纳米结构的高通量制备却很少被探索。在这里,通过将物理掩膜集成到标准的超高真空(UHV)分子制备系统中,我们展示了一种高通量方法,用于在金属表面制备具有连续组成分布的超分子纳米结构。超分子自组装的空间可寻址样品库通过高分辨率扫描探针显微镜进行表征。我们可以在单个基板上探索不同分子比例的不同二元纳米结构。此外,我们使用最小生成树方法对形成的纳米结构的结构性质进行定性和定量研究。这种高通量方法可能会加速对表面支撑的低维纳米结构的筛选和探索,而不仅限于超分子相互作用。