The formation of most organogels requires the compatibility of both the gelator and solvent. It is very desirable if the theological properties of a gel can be manipulated to achieve the desired performance. In this paper, a novel organogel was developed and its theological properties and fiber network were engineered by controlling the thermal processing conditions. The gel was formed by the gelation of 12-hydroxystearic acid as a gelator in benzyl benzoate. It was observed that the degree of supercooling for gel formation has a significant effect on the theological properties and fiber network structure. By increasing supercooling, the elasticity of the gel was enhanced, and the correlation length of the fibers was shortened, leading to t...
During these last few decades the new endeavor of tissue engineering and regenerative medicine has d...
This book provides a physics-oriented introduction to organogels with a comparison to polymer thermo...
Gels can be found in all aspects of life. They are used not only in cosmetics, hand soaps, and food,...
The formation of most organogels requires the compatibility of both the gelator and solvent. It is v...
Tissue engineering requires scaffolding techniques based on non-toxic processes that permits the fab...
The architecture of a biocompatible organogel formed by gelation of a small molecule organic gelator...
The architecture of a biocompatible organogel formed by gelation of a small molecule organic gelator...
Molecular organogels are thermo reversible quasi-solid materials, which are formed by low molecular ...
International audienceA hydrogel can be formed by an organogelator in the presence of a nanoemulsion...
A new low molecular weight hydrogelator with a saccharide (lactobionic) polar head linked by azide-a...
Crystalline spherulitic fiber networks are commonly observed in polymeric and supramolecular functio...
The engineering of soft functional materials based on the construction of three-dimensional intercon...
The influence of a nonionic surfactant polyoxyethylene sirbitan monooelate on the structure of the f...
We describe the preparation of a novel amphiphilic gelator built from a formamidine core, which is a...
Hypothesis: Organogels are hydrophobic macromolecular networks with ability to absorb and retain org...
During these last few decades the new endeavor of tissue engineering and regenerative medicine has d...
This book provides a physics-oriented introduction to organogels with a comparison to polymer thermo...
Gels can be found in all aspects of life. They are used not only in cosmetics, hand soaps, and food,...
The formation of most organogels requires the compatibility of both the gelator and solvent. It is v...
Tissue engineering requires scaffolding techniques based on non-toxic processes that permits the fab...
The architecture of a biocompatible organogel formed by gelation of a small molecule organic gelator...
The architecture of a biocompatible organogel formed by gelation of a small molecule organic gelator...
Molecular organogels are thermo reversible quasi-solid materials, which are formed by low molecular ...
International audienceA hydrogel can be formed by an organogelator in the presence of a nanoemulsion...
A new low molecular weight hydrogelator with a saccharide (lactobionic) polar head linked by azide-a...
Crystalline spherulitic fiber networks are commonly observed in polymeric and supramolecular functio...
The engineering of soft functional materials based on the construction of three-dimensional intercon...
The influence of a nonionic surfactant polyoxyethylene sirbitan monooelate on the structure of the f...
We describe the preparation of a novel amphiphilic gelator built from a formamidine core, which is a...
Hypothesis: Organogels are hydrophobic macromolecular networks with ability to absorb and retain org...
During these last few decades the new endeavor of tissue engineering and regenerative medicine has d...
This book provides a physics-oriented introduction to organogels with a comparison to polymer thermo...
Gels can be found in all aspects of life. They are used not only in cosmetics, hand soaps, and food,...