| Literature DB >> 27727482 |
Fan Xie1, Guanghui Ouyang1, Long Qin1, Minghua Liu1,2.
Abstract
A novel amphiphilic dendron (AZOC8 GAc) with three l-glutamic acid units and an azobenzene moiety covalently linked by an alkyl spacer has been designed. The compound formed hydrogels with water at very low concentration and self-assembled into chiral-twist structures. The gel showed a reversible macroscopic volume phase transition in response to pH variations and photo-irradiation. During the photo-triggered changes, although the gel showed complete reversibility in its optical absorptions, only an incomplete chiroptical property change was achieved. On the other hand, the dendron could form a 1:1 inclusion complex through a host-guest interaction with α-cyclodextrin (α-CD), designated as supra-dendron gelator AZOC8 GAc/α-CD. The supra-dendron showed similar gelation behavior to that of AZOC8 GAc, but with enhanced photoisomerization-transition efficiency and chiroptical switching capacity, which was completely reversible in terms of both optical and chiroptical performances. The self-assembly of the supra-dendron is a hierarchical or multi-supramolecular self-assembling process. This work has clearly illustrated that the hierarchical and multi-supramolecular self-assembling system endows the supramolecular nanostructures or materials with superior reversible optical and chiroptical switching.Entities:
Keywords: chiral twist; chiroptical switching; gels; photoresponsiveness; supramolecular chemistry
Year: 2016 PMID: 27727482 DOI: 10.1002/chem.201603998
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236