Tong Jincheng, de Bruyn Nathan, Alieva Adriana, Legge Elizabeth J, Boyes Matthew, Song Xiuju, Walisinghe Alvin J, Pollard Andrew J, Anderson Michael W, Vetter Thomas, Melle-Franco Manuel, Casiraghi Cinzia
Department of Chemistry, University of Manchester, Manchester, M13 9PL, UK.
National Physical Laboratory, Teddington, Middlesex, TW11 0LW, UK.
Nat Commun. 2024 Mar 5;15(1):2015. doi: 10.1038/s41467-024-45900-0.
It is well known that molecules confined very close to a surface arrange into molecular layers. Because solid-liquid interfaces are ubiquitous in the chemical, biological and physical sciences, it is crucial to develop methods to easily access molecular layers and exploit their distinct properties by producing molecular layered crystals. Here we report a method based on crystallization in ultra-thin puddles enabled by gas blowing, which allows to produce molecular layered crystals with thickness down to the monolayer onto a surface, making them directly accessible for characterization and further processing. By selecting four molecules with different types of polymorphs, we observed exclusive crystallization of polymorphs with Van der Waals interlayer interactions, which have not been observed with traditional confinement methods. In conclusion, the gas blowing approach unveils the opportunity to perform materials chemistry under confinement onto a surface, enabling the formation of distinct crystals with selected polymorphism.
众所周知,非常靠近表面的分子会排列成分子层。由于固液界面在化学、生物学和物理科学中无处不在,因此开发能够轻松获得分子层并通过制备分子层状晶体来利用其独特性质的方法至关重要。在此,我们报告一种基于气体吹拂实现的超薄液池中结晶的方法,该方法能够在表面制备厚度低至单层的分子层状晶体,使其可直接用于表征和进一步加工。通过选择四种具有不同多晶型的分子,我们观察到具有范德华层间相互作用的多晶型物的专属结晶,这是传统受限方法未曾观察到的。总之,气体吹拂方法为在表面受限条件下进行材料化学研究提供了机会,能够形成具有选定多晶型的独特晶体。