Many amphiphile–water mixtures will self-assemble into three-dimensional soft condensed structures known as inverse bicontinuous cubic phases. These structures are found in nature and have applications in nanotechnology. Here we show that by systematically varying amphiphile chain splay, we are able to control the relative stability of the inverse bicontinuous phases in a homologous series of monoglycerides in a predictable manner. In particular, we demonstrate that decreasing chain splay leads to the appearance of the primitive bicontinuous cubic phase while increasing chain splay reduces the channel size of the remaining two bicontinuous phases and tends to destabilize them with respect to the more curved inverse micellar and inverse hexa...
Solution self-assembly of amphiphilic block copolymers into inverse bicontinuous cubic mesophases is...
We demonstrate the formation of a macroscopically oriented inverse bicontinuous cubic (QII) lipid ...
Future nanoscale soft matter design will be driven by the biological paradigms of hierarchical self-...
Many amphiphile–water mixtures will self-assemble into three-dimensional soft condensed structures k...
ABSTRACT: We demonstrate the formation of a macro-scopically oriented inverse bicontinuous cubic (QI...
Inverse bicontinuous cubic (IBC) structures consisting of triply periodic minimal surfaces of block ...
Biological amphiphiles, such as the lipids that make up the fabric of the cell membrane, can self-as...
We investigate the stability of seven inverse bicontinuous cubic phases [G, D, P, C(P), S, I-WP, F-R...
Unlike other simpler morphologies that AB diblock copolymers (DBCs) can form, ordered bicontinuous p...
Lipid bicontinuous cubic phases have attracted enormous interest as bio-compatible scaffolds for use...
Solution self-Assembly of amphiphilic block copolymers into inverse bicontinuous cubic mesophases is...
Inverse bicontinuous cubic phases are ubiquitous in lipid-water mixtures and consist of a lipid bila...
Inverse bicontinuous cubic phases with two aqueous network domains separated by a smooth bilayer are...
Self-assembly remains the most efficient route to the formation of ordered nanostructures, including...
Analogous to the complex membranes found in cellular organelles, such as the endoplasmic reticulum, ...
Solution self-assembly of amphiphilic block copolymers into inverse bicontinuous cubic mesophases is...
We demonstrate the formation of a macroscopically oriented inverse bicontinuous cubic (QII) lipid ...
Future nanoscale soft matter design will be driven by the biological paradigms of hierarchical self-...
Many amphiphile–water mixtures will self-assemble into three-dimensional soft condensed structures k...
ABSTRACT: We demonstrate the formation of a macro-scopically oriented inverse bicontinuous cubic (QI...
Inverse bicontinuous cubic (IBC) structures consisting of triply periodic minimal surfaces of block ...
Biological amphiphiles, such as the lipids that make up the fabric of the cell membrane, can self-as...
We investigate the stability of seven inverse bicontinuous cubic phases [G, D, P, C(P), S, I-WP, F-R...
Unlike other simpler morphologies that AB diblock copolymers (DBCs) can form, ordered bicontinuous p...
Lipid bicontinuous cubic phases have attracted enormous interest as bio-compatible scaffolds for use...
Solution self-Assembly of amphiphilic block copolymers into inverse bicontinuous cubic mesophases is...
Inverse bicontinuous cubic phases are ubiquitous in lipid-water mixtures and consist of a lipid bila...
Inverse bicontinuous cubic phases with two aqueous network domains separated by a smooth bilayer are...
Self-assembly remains the most efficient route to the formation of ordered nanostructures, including...
Analogous to the complex membranes found in cellular organelles, such as the endoplasmic reticulum, ...
Solution self-assembly of amphiphilic block copolymers into inverse bicontinuous cubic mesophases is...
We demonstrate the formation of a macroscopically oriented inverse bicontinuous cubic (QII) lipid ...
Future nanoscale soft matter design will be driven by the biological paradigms of hierarchical self-...