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07 Aug 20:56

[ASAP] Topological Impact on the Kinetic Stability of Supramolecular Polymers

by Atsuhito Suzuki†, Keisuke Aratsu†, Sougata Datta‡, Nobutaka Shimizu§, Hideaki Takagi§, Rie Haruki§, Shin-ichi Adachi§, Martin Hollamby?, Fabien Silly?, and Shiki Yagai*‡

TOC Graphic

Journal of the American Chemical Society
DOI: 10.1021/jacs.9b06029
05 Aug 20:46

Efficient Aggregation‐Induced Emission Manipulated by Polymer Host Materials

by Xing‐Huo Wang, Nan Song, Wei Hou, Chun‐Yu Wang, Yan Wang, Jun Tang, Ying‐Wei Yang
Advanced Materials Efficient Aggregation‐Induced Emission Manipulated by Polymer Host Materials

Supramolecular polymer networks and supramolecular nanoparticles based on copolymer hosts bearing a number of pillar[5]arene dangling side chains and tetraphenyethylene‐based tetratopic guests are fabricated, incorporating high fluorescence quantum yield, tunable emission wavelength, and stable microstructures. This facile strategy suggests a new self‐assembly approach to construct high‐performance light‐harvesting materials.


Abstract

Linear copolymer hosts bearing a number of pillar[5]arene dangling side chains are synthesized for the facile construction of highly emissive supramolecular polymer networks (SPNs) upon noncovalently cross‐linking with a series of tetraphenyethylene (TPE)‐based tetratopic guests terminated with different functional groups through supramolecular host–guest interactions. An extremely high fluorescence quantum yield (98.22%) of the SPNs materials is obtained in tetrahydrofuran (THF) by fine‐tuning the parameters, and meanwhile supramolecular light‐harvesting systems based on spherical supramolecular nanoparticles are constructed by interweaving 9,10‐distyrylanthracene (DSA) and TPE‐based guest molecules of aggregation‐induced emission (AIE) with the copolymer hosts in the mixed solvent of THF/H2O. The present study not only illustrates the restriction of the intramolecular rotations (RIR)‐ruled emission enhancement mechanism regulated particularly by macrocyclic arene‐containing copolymer hosts, but also suggests a new self‐assembly approach to construct high‐performance light‐harvesting materials.

05 Aug 15:22

[ASAP] Assembly of a Porous Supramolecular Polyknot from Rigid Trigonal Prismatic Building Blocks

by Penghao Li†, Zhijie Chen†, Matthew R. Ryder‡, Charlotte L. Stern†, Qing-Hui Guo†, Xingjie Wang†, Omar K. Farha†, and J. Fraser Stoddart*†§?

TOC Graphic

Journal of the American Chemical Society
DOI: 10.1021/jacs.9b06445