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Control of crystallization in supramolecular soft materials engineering

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journal contribution
posted on 2013-01-01, 00:00 authored by Jingliang LiJingliang Li, B Yuan, X Y Liu, R Y Wang, Xungai Wang
As one class of the most important supramolecular functional materials, gels formed by low molecular weight gelators (LMWGs) have many important applications. The key important parameters affecting the in-use performance of a gel are determined by the hierarchical fiber network structures. Fiber networks consisting of weakly interacting multiple domains are commonly observed in gels formed by LMWGs. The rheological properties, particularly the elasticity, of a gel with such a fiber network are weak due to the weak interactions between the individual domains. As achieving desirable rheological properties of such a gel is practically relevant, in this work, we demonstrate the engineering of gels with such a type of fiber network by controlling crystallization of the gelator. Two example gels formed by a glutamic acid derivative in a non-ionic surfactant Tween 80 and in propylene glycol were engineered by controlling the thermodynamic driving force for crystallization. For a fixed gelator concentration, the thermodynamic driving force was manipulated by controlling the temperature for fiber crystallization. It was observed that there exists an optimal temperature at which a gel with maximal elasticity can be fabricated. This will hopefully provide guidelines for producing high performance soft materials by engineering their fiber network structures.

History

Journal

Soft matter

Volume

9

Issue

2

Pagination

435 - 442

Publisher

Royal Society of Chemistry

Location

Cambridge, England

ISSN

1744-683X

eISSN

1744-6848

Language

eng

Publication classification

C1 Refereed article in a scholarly journal

Copyright notice

2013, Royal Society of Chemistry