Abstract:Periodic orientation patterns occurring in nematic gels, revealed by optical and scanning electron microscopy, are found to be formed by spontaneous self-assembly of fibrous aggregates of a low-molecular-weight organogelator in an aligned thermotropic liquid crystal (LC). Self-organization into periodic structures is also reflected in a calorimetric study, which shows the occurrence of three thermoreversible states, namely, isotropic liquid, nematic and nematic gel. The segregation and self-assembly of the fib… Show more
“…3 Anisotropic aggregation of gelators in LC templates results in macroscopic alignment of functional self-assembled fibers. [20][21][22]29,30,[36][37][38][39] The LC fields also allow the formation of complicated fibrous structures such as loop-like fibers 40 or gradually twisted aligned fibers. 20 Therefore, the self-assembled composites of liquid crystals and gelators are versatile and advantageous approaches for the construction of complex fibrous structures.…”
Two orthogonal (grid-like) and one directional fibrous structures are selectively formed through anisotropic self-assembly of low-molecular-weight gelators in liquid-crystalline smectic A templates depending on thermally tuned layered structures.
“…3 Anisotropic aggregation of gelators in LC templates results in macroscopic alignment of functional self-assembled fibers. [20][21][22]29,30,[36][37][38][39] The LC fields also allow the formation of complicated fibrous structures such as loop-like fibers 40 or gradually twisted aligned fibers. 20 Therefore, the self-assembled composites of liquid crystals and gelators are versatile and advantageous approaches for the construction of complex fibrous structures.…”
Two orthogonal (grid-like) and one directional fibrous structures are selectively formed through anisotropic self-assembly of low-molecular-weight gelators in liquid-crystalline smectic A templates depending on thermally tuned layered structures.
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