Rubert Llorenç, Ehmann Heike M A, Soberats Bartolome
Department of Chemistry, Universitat de les Illes Balears, Cra. Valldemossa, Km. 7.5, 07122, Palma de Mallorca, Spain.
Anton Paar GmbH, Anton-Paar-Straße 20, 8054, Graz, Austria.
Angew Chem Int Ed Engl. 2025 Jan 10;64(2):e202415774. doi: 10.1002/anie.202415774. Epub 2024 Nov 6.
We designed a new cyanine dye 1, with two pedant rod-like groups, capable of forming two distinct two-dimensional (2D) supramolecular polymorphs in methylcyclohexane; an H-type aggregate (Agg-H) and a J-type aggregate (Agg-J). Importantly, these two polymorphs were not accessed through polymerization events, and instead through the thermal transformation of a third particle-like polymorph (Agg-H) formed by the anti-cooperative assembly of 1. While Agg-H is generated upon cooling the solution of Agg-H by a thermoreversible polymorph transition, the Agg-J was obtained through a hidden pathway by combining sonication and cooling to the Agg-H solution. This is the first report on the obtention of H- and J-type cyanine polymorphs that in turn could be isolated in solid-state to render two new 2D photoactive materials. This paper unveils new strategies for designing 2D supramolecular polymers using calamitic residues, but also undercovers relevant aspects of pathway complexity and polymorph transitions that might be crucial for developing novel photonic systems.
我们设计了一种新型花菁染料1,它带有两个悬垂的棒状基团,能够在甲基环己烷中形成两种不同的二维(2D)超分子多晶型物;一种H型聚集体(Agg-H)和一种J型聚集体(Agg-J)。重要的是,这两种多晶型物不是通过聚合反应得到的,而是通过由1的反协同组装形成的第三种颗粒状多晶型物(Agg-H)的热转变得到的。虽然通过热可逆的多晶型转变冷却Agg-H溶液时会生成Agg-H,但通过对Agg-H溶液进行超声处理并冷却,通过一条隐藏途径可得到Agg-J。这是关于获得H型和J型花菁多晶型物的首次报道,这些多晶型物进而可以固态形式分离出来,得到两种新的二维光活性材料。本文揭示了使用棒状残基设计二维超分子聚合物的新策略,但也揭示了途径复杂性和多晶型转变的相关方面,这些对于开发新型光子系统可能至关重要。