The architecture of self-organized three-dimensionally interconnected nanocrystal fibrillar networks has been achieved by ultrasound from a solution consisting of separate spherulites. The ultrasound stimulated structural transformation is correlated to the striking ultrasonic effects on turning nongelled solutions or weak gels into strong gels instantly, with enhancement of the storage modulus up to 3 magnitudes and up to 4 times more gelling capability. The basic principle involved in the ultrasound-induced structural transformation is established on the basis of the nucleation-and-growth model of a fiber network formation, and the mechanism of seeding multiplication, aggregation suppressing, and fiber distribution and growth promotion is...
The natural blood protein fibrinogen is a highly potent precursor for the production of various biom...
The architecture of three-dimensional interconnecting self-organized nanofiber networks from separat...
Self-assembly of small molecular components holds great promises as a bottom-up approach for nano-ob...
This article gives an overview of the current progress of a class of supramolecular soft materials c...
<p>A novel low-molecular-mass organic gelator <b>T1</b> containing tryptamine and sugar segments was...
A new approach of engineering of molecular gels was established on the basis of a nucleation-initiat...
Three-dimensional fiber networks were created from an organogel system consisting mainly of elongate...
We describe the preparation of a novel amphiphilic gelator built from a formamidine core, which is a...
The engineering of soft functional materials based on the construction of three-dimensional intercon...
It is likely that nanofabrication will underpin many technologies in the 21st century. Synthetic che...
Three-dimensional fiber networks were created from an organogel system consisting mainly of elongate...
A 68-membered macrocycle undergoes ultrasound-induced supramolecular gelation in acetonitrile. The s...
The architecture of a biocompatible organogel formed by gelation of a small molecule organic gelator...
A 68-membered macrocycle undergoes ultrasound-induced supramolecular gelation in acetonitrile. The s...
Chiral N, N'-disubstituted squaramide 1 has been found to undergo self-assembly in a variety of alco...
The natural blood protein fibrinogen is a highly potent precursor for the production of various biom...
The architecture of three-dimensional interconnecting self-organized nanofiber networks from separat...
Self-assembly of small molecular components holds great promises as a bottom-up approach for nano-ob...
This article gives an overview of the current progress of a class of supramolecular soft materials c...
<p>A novel low-molecular-mass organic gelator <b>T1</b> containing tryptamine and sugar segments was...
A new approach of engineering of molecular gels was established on the basis of a nucleation-initiat...
Three-dimensional fiber networks were created from an organogel system consisting mainly of elongate...
We describe the preparation of a novel amphiphilic gelator built from a formamidine core, which is a...
The engineering of soft functional materials based on the construction of three-dimensional intercon...
It is likely that nanofabrication will underpin many technologies in the 21st century. Synthetic che...
Three-dimensional fiber networks were created from an organogel system consisting mainly of elongate...
A 68-membered macrocycle undergoes ultrasound-induced supramolecular gelation in acetonitrile. The s...
The architecture of a biocompatible organogel formed by gelation of a small molecule organic gelator...
A 68-membered macrocycle undergoes ultrasound-induced supramolecular gelation in acetonitrile. The s...
Chiral N, N'-disubstituted squaramide 1 has been found to undergo self-assembly in a variety of alco...
The natural blood protein fibrinogen is a highly potent precursor for the production of various biom...
The architecture of three-dimensional interconnecting self-organized nanofiber networks from separat...
Self-assembly of small molecular components holds great promises as a bottom-up approach for nano-ob...