Ottolini Michela, Anfar Zakaria, Grover Nitika, Magna Gabriele, Stefanelli Manuela, Paolesse Roberto, Senge Mathias O, Bettini Simona, Valli Ludovico, Oda Reiko, Giancane Gabriele
Department of Biological and Environmental Sciences and Technologies (DiSTeBA), Campus Ecotekne, University of Salento, Via per Monteroni, 73100 Lecce, Italy.
Univ. Bordeaux, CNRS, Bordeaux INP, CBMN, UMR 5248, F-33600 Pessac, France.
Nanoscale. 2024 Sep 12;16(35):16593-16601. doi: 10.1039/d4nr02344g.
A supramolecular approach based on self-assembled structures allows the formation of large structured co-assemblies based on chiral and achiral compounds with original physicochemical features. In this contribution, an achiral and hydrophobic porphyrin was co-assembled at the air-water interface with mesoscopic silica nano-helices dispersed in the water subphase of a Langmuir trough without covalent bond formation. This procedure allowed transferring the porphyrin/nano-helix co-assemblies on a solid support within a thin hybrid layer. The interaction between the two species was characterized using spectroscopic techniques and atomic force microscopy. As evidenced by the circular dichroism measurements performed directly on solid films, tunable chirality was induced to the porphyrin aggregates according to the chirality of the silica nano-helices. When the co-assemblies were transferred on surface plasmon resonance (SPR) slides and exposed to aqueous solutions of histidine enantiomers, selective chiral discrimination was observed which was determined by the matching/mismatching between the chirality of the analyte and the helicity of the nano-helical structure.
基于自组装结构的超分子方法能够形成基于具有原始物理化学特性的手性和非手性化合物的大型结构化共组装体。在本研究中,一种非手性且疏水的卟啉与分散在Langmuir槽水亚相中的介观二氧化硅纳米螺旋在气-水界面处共组装,未形成共价键。该过程允许在薄混合层内将卟啉/纳米螺旋共组装体转移到固体支持物上。使用光谱技术和原子力显微镜对这两种物质之间的相互作用进行了表征。如直接在固体薄膜上进行的圆二色性测量所证明的,根据二氧化硅纳米螺旋的手性,卟啉聚集体被诱导出可调谐的手性。当共组装体转移到表面等离子体共振(SPR)载玻片上并暴露于组氨酸对映体的水溶液时,观察到了选择性手性识别,这取决于分析物的手性与纳米螺旋结构的螺旋度之间的匹配/不匹配。