Department of Chemistry, Graduate School of Science, The University of Tokyo , 7-3-1, Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Japan Society for the Promotion of Science (JSPS), Ichibancho, Chiyoda-ku, Tokyo 102-8471, Japan.
J Am Chem Soc. 2017 Mar 1;139(8):3145-3152. doi: 10.1021/jacs.6b12776. Epub 2017 Feb 15.
Synthetic two-dimensional polymers, or bottom-up nanosheets, are ultrathin polymeric frameworks with in-plane periodicity. They can be synthesized in a direct, bottom-up fashion using atomic, ionic, or molecular components. However, few are based on carbon-carbon bond formation, which means that there is a potential new field of investigation into these fundamentally important chemical bonds. Here, we describe the bottom-up synthesis of all-carbon, π-conjugated graphdiyne nanosheets. A liquid/liquid interfacial protocol involves layering a dichloromethane solution of hexaethynylbenzene on an aqueous layer containing a copper catalyst at room temperature. A multilayer graphdiyne (thickness, 24 nm; domain size, >25 μm) emerges through a successive alkyne-alkyne homocoupling reaction at the interface. A gas/liquid interfacial synthesis is more successful. Sprinkling a very small amount of hexaethynylbenzene in a mixture of dichloromethane and toluene onto the surface of the aqueous phase at room temperature generated single-crystalline graphdiyne nanosheets, which feature regular hexagonal domains, a lower degree of oxygenation, and uniform thickness (3.0 nm) and lateral size (1.5 μm).
合成二维聚合物,或自下而上的纳米片,是具有面内周期性的超薄聚合物框架。它们可以通过原子、离子或分子组件以直接的自下而上的方式合成。然而,很少有基于碳-碳键形成的,这意味着这些基本重要的化学键有一个潜在的新的研究领域。在这里,我们描述了全碳、π 共轭石墨炔纳米片的自下而上合成。一种液/液界面方案包括在室温下将六乙炔基苯的二氯甲烷溶液分层在含有铜催化剂的水层上。通过在界面处的连续炔烃-炔烃偶联反应,出现了多层石墨炔(厚度为 24nm;域尺寸>25μm)。气/液界面合成更为成功。在室温下,将非常少量的六乙炔基苯撒在二氯甲烷和甲苯的混合物中滴加到水相的表面上,生成了单晶石墨炔纳米片,其具有规则的六边形畴、较低的氧化程度以及均匀的厚度(3.0nm)和横向尺寸(1.5μm)。