We demonstrate the formation of a macroscopically oriented inverse bicontinuous cubic (QII) lipid phase from a sponge (L3) phase by controlled hydration during shear flow. The L3 phase was the monoolein/ butanediol/water system; the addition of water reduces the butanediol concentration, inducing the formation of a diamond (QIID) cubic phase, which is oriented by the shear flow. The phenomenon was reproduced in both capillary and Couette geometries, indicating that this represents a robust general route for the production of highly aligned bulkQII samples, with applications in nanomaterial templating and protein research
Bicontinuous cubic structures offer enormous potential in applications ranging from protein crystall...
A macroscopically oriented inverse hexagonal phase (H<sub>II</sub>) of the lipid phytantriol in wate...
A macroscopically oriented double diamond inverse bicontinuous cubic phase (Q(II)(D)) of the lipid g...
ABSTRACT: We demonstrate the formation of a macro-scopically oriented inverse bicontinuous cubic (QI...
We demonstrate the formation of a macroscopically oriented inverse bicontinuous cubic (QII) lipid ph...
We demonstrate a method by which we can produce an oriented film of an inverse bicontinuous cubic ph...
Inverse bicontinuous cubic (Q(II)) phases are nanostructured materials formed by lipid self-assembly...
Lipid bicontinuous cubic phases have attracted enormous interest as bio-compatible scaffolds for use...
This paper describes time-resolved x-ray diffraction data monitoring the transformation of one inver...
The bicontinuous lipidic cubic phase (LCP), which is based on the fundamental structure of the lipid...
The bicontinuous lipidic cubic phase (LCP), which is based on the fundamental structure of the lipid...
A macroscopically oriented inverse hexagonal phase (HII) of the lipid phytantriol in water is conver...
A macroscopically oriented double diamond inverse bicontinuous cubic phase (QIID) of the lipid glyce...
We report a simple method to produce a single crystal region of an inverse bicontinuous cubic (Q<sub...
Inverse bicontinuous cubic phases with two aqueous network domains separated by a smooth bilayer are...
Bicontinuous cubic structures offer enormous potential in applications ranging from protein crystall...
A macroscopically oriented inverse hexagonal phase (H<sub>II</sub>) of the lipid phytantriol in wate...
A macroscopically oriented double diamond inverse bicontinuous cubic phase (Q(II)(D)) of the lipid g...
ABSTRACT: We demonstrate the formation of a macro-scopically oriented inverse bicontinuous cubic (QI...
We demonstrate the formation of a macroscopically oriented inverse bicontinuous cubic (QII) lipid ph...
We demonstrate a method by which we can produce an oriented film of an inverse bicontinuous cubic ph...
Inverse bicontinuous cubic (Q(II)) phases are nanostructured materials formed by lipid self-assembly...
Lipid bicontinuous cubic phases have attracted enormous interest as bio-compatible scaffolds for use...
This paper describes time-resolved x-ray diffraction data monitoring the transformation of one inver...
The bicontinuous lipidic cubic phase (LCP), which is based on the fundamental structure of the lipid...
The bicontinuous lipidic cubic phase (LCP), which is based on the fundamental structure of the lipid...
A macroscopically oriented inverse hexagonal phase (HII) of the lipid phytantriol in water is conver...
A macroscopically oriented double diamond inverse bicontinuous cubic phase (QIID) of the lipid glyce...
We report a simple method to produce a single crystal region of an inverse bicontinuous cubic (Q<sub...
Inverse bicontinuous cubic phases with two aqueous network domains separated by a smooth bilayer are...
Bicontinuous cubic structures offer enormous potential in applications ranging from protein crystall...
A macroscopically oriented inverse hexagonal phase (H<sub>II</sub>) of the lipid phytantriol in wate...
A macroscopically oriented double diamond inverse bicontinuous cubic phase (Q(II)(D)) of the lipid g...