Interfacial Organization of Achiral Porphyrins via a Unidirectional Compression: a General Method for Chiroptical Porphyrin Assemblies of Selected Chirality

July 28, 2017

Title

Interfacial Organization of Achiral Porphyrins via a Unidirectional Compression: a General Method for Chiroptical Porphyrin Assemblies of Selected Chirality

Author

Xiao Zhang, Yanping Wang, Penglei Chen, Yunlong Rong, Minghua Liu

Year

2016

Journal

Physical Chemistry Chemical Physics

Abstract

Porphyrins are considered to be important scaffolds bridging supramolecular chemistry and chiral chemistry, where chirality selection via physical effects such as directional stirring and spin-coating has aroused particular interest. Nevertheless, these protocols could only work on a limited number of achiral porphyrins. It still remains a formidable challenge to pave a general avenue for the construction of chiral assemblies using achiral porphyrins. By means of a unique Langmuir–Schaefer (LS) technique of a unidirectional compression configuration, we herein have demonstrated that a series of achiral porphyrins could be facilely organized to form chiral interfacial assemblies of controlled supramolecular chirality. It has been disclosed that such a fascinating chirality selection scenario is intimately related to the direction of the compression-generated vortex-like flow, while the compression speed, one of the most significant parameters of the Langmuir technique, contributes less to this issue. With regard to a surface-pressure-dependent chirality selection phenomenon, it is suggested that the directional vortex-like flow generated by lateral compression might play a role in promoting the preferential growth of chiral assemblies showing an enhanced yet controlled CD signal. Our protocol might be, to some extent, a general method for achieving chiral porphyrin assemblies of controlled chirality.

Instrument

J-815

Keywords

Circular dichroism, Linear dichroism, Stereochemistry, Materials