Nicosia Angelo, Vento Fabiana, Marletta Giovanni, Messina Grazia M L, Satriano Cristina, Villari Valentina, Micali Norberto, De Martino Maria Teresa, Schotman Maaike J G, Mineo Placido Giuseppe
Department of Chemical Sciences and INSTM UdR of Catania, University of Catania, Viale A. Doria 6, I-95125 Catania, Italy.
LAMSUN-CSGI Unit of the Interuniversity Consortium for the Development of Large Interphases Systems (CSGI), Università di Catania, Viale A. Doria, 6, I-95125 Catania, Italy.
Nanomaterials (Basel). 2021 Jun 25;11(7):1673. doi: 10.3390/nano11071673.
The Spontaneous Symmetry Breaking (SSB) phenomenon is a natural event in which a system changes its symmetric state, apparently reasonless, in an asymmetrical one. Nevertheless, this occurrence could be hiding unknown inductive forces. An intriguing investigation pathway uses supramolecular aggregates of suitable achiral porphyrins, useful to mimic the natural light-harvesting systems (as chlorophyll). Using as SSB probe supramolecular aggregates of 5,10,15,20-tetrakis[(ω-methoxypolyethyleneoxy)phenyl]porphyrin (StarP), a non-ionic achiral PEGylated porphyrin, we explore here its interaction with weak asymmetric thermal gradients fields. The cross-correlation of the experimental data (circular dichroism, confocal microscopy, atomic force microscopy, and cryo-transmission electron microscopy) revealed that the used building blocks aggregate spontaneously, organizing in flag-like structures whose thermally-induced circular dichroism depends on their features. Finally, thermal gradient-induced enantioselectivity of the supramolecular flag-like aggregates has been shown and linked to their size-dependence mesoscopic deformation, which could be visualized as waving flags in the wind.
自发对称性破缺(SSB)现象是一种自然事件,其中一个系统会从其对称状态转变为不对称状态,表面上毫无缘由。然而,这种现象可能隐藏着未知的诱导力。一条引人入胜的研究途径是利用合适的非手性卟啉的超分子聚集体,这有助于模拟天然的光捕获系统(如叶绿素)。我们使用5,10,15,20-四[(ω-甲氧基聚亚乙基氧基)苯基]卟啉(StarP)的超分子聚集体作为SSB探针,StarP是一种非离子型非手性聚乙二醇化卟啉,在此研究其与弱不对称热梯度场的相互作用关系。实验数据(圆二色性、共聚焦显微镜、原子力显微镜和低温透射电子显微镜)的交叉相关性表明,所使用的构建块会自发聚集,形成类似旗帜的结构,其热诱导圆二色性取决于它们的特征。最后,研究表明了超分子类旗帜聚集体的热梯度诱导对映选择性,并将其与它们的尺寸依赖性介观变形相关联,可以将其可视化为风中飘扬的旗帜。