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2 s are carried out using Sunset Yellow FCF, a lyotropic chromonic LC with a small twist elastic consta
5 nd templating has been demonstrated by using lyotropic chromonic liquid crystals (LCLCs) as these mat
7 rticles in linear defects-disclinations in a lyotropic colloidal cholesteric liquid crystal: a contin
8 inued susceptibility to LOR (associated with lyotropic formation of the hexagonal II phase) and assoc
9 interfacial water within a "normal" (Type I) lyotropic gyroid phase formed by a gemini dicarboxylate
10 aspartate, chloride, etc., produce a marked lyotropic (Hofmeister) effect on the repetitive structur
11 This material is based on a polymerizable lyotropic (i.e., amphiphilic) liquid crystal (1) that fo
14 patterning, templating, and when extended to lyotropic LCs, a process leading to uniform-sized spheri
19 We focus upon the generation of 'dilutable' lyotropic liquid crystal phases with two- and three-dime
20 ation of this unique class of nonamphiphilic lyotropic liquid crystal shares enormous similarity to t
23 l of polystyrene nanosphere templates from a lyotropic liquid crystal-templated silica sol-gel matrix
26 pack into a previously unknown, low-symmetry lyotropic liquid crystalline Frank-Kasper sigma phase.
29 s electrodeposited from the hexagonal (H(I)) lyotropic liquid crystalline phase are shown to be excel
31 tion, suspensions were prepared in which the lyotropic liquid crystalline phase behavior of the hybri
32 chemically deposited from the hexagonal (H1) lyotropic liquid crystalline phase of the nonionic surfa
35 iquid interface, similar to the formation of lyotropic liquid crystalline phases by common surfactant
38 dition of the acidic lipid component to this lyotropic liquid crystalline system reduces its range of
40 rmed of thermodynamically stable cubic phase lyotropic liquid crystals (LLCs) could replace the prese
41 monium chloride micelles for the assembly of lyotropic liquid crystals generates new structural compl
42 ueous interconnected networks of cubic-phase lyotropic liquid crystals, urate permeates only through
46 PtGeQ and C(n)PyPtSnSe were templated by the lyotropic liquid-crystalline phase of alkylpyridinium su
49 , and contrary to what is perceived for soft lyotropic materials in general, the self-assembly method
51 sses) in the presence of molecular porogens, lyotropic mesophases, supramolecular architectures, emul
54 crostructures of reduced graphene oxide in a lyotropic nematic liquid crystal of graphene oxide flake
56 re traditionally classified as thermotropic, lyotropic or polymeric, based on the stimulus that gover
58 ll quaternary mixtures showed highly regular lyotropic phase behavior with the same sequence of phase
60 ported for two decades and is the only known lyotropic phase whose structure consists of a close pack
61 ction of the fatty acid with ozone, and that lyotropic-phase formation also occurs in more complex mi
63 centrations of water and surfactant in these lyotropic phases also triggers formation of the related
64 el of the uncharged lipid displays the usual lyotropic phases as a function of the relative volume fr
65 ate that the droplets contained crystal-like lyotropic phases including hexagonal and cubic close-pac
68 e expect an ion's position in the Hofmeister lyotropic series to be determined by a combination of dr
70 h layered materials such as thermotropic and lyotropic smectic liquid crystals and block copolymers.
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