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相关论文: Lyotropic chromonic liquid crystal semiconductors …

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The surface alignment of lyotropic chromonic liquid crystals (LCLCs) can be not only planar (tangential) but also homeotropic, with self-assembled aggregates perpendicular to the substrate, as demonstrated by mapping optical retardation and…

We have developed a class of idealized models of chromonic molecules which are miscible in water, but which can form aggregates which in turn organize into lyotropic liquid crystal (LC) phases. By carrying out Monte Carlo simulation in a…

统计力学 · 物理学 2007-05-23 Prabal K. Maiti , Yves Lansac , Matthew A. Glaser , Noel A. Clark

We explore micropatterned director structures of aqueous lyotropic chromonic liquid crystal (LCLC) films created on square lattice cylindrical-micropost substrates. The structures are manipulated by modulating the LCLC mesophases and their…

The interplay among solute and solvent molecules in lyotropic mesophases governs their physicochemical properties, such as phase behaviors and viscoelasticity. In our model system, a lyotropic chromonic liquid crystal (LCLC) made by…

软凝聚态物质 · 物理学 2024-09-10 Jiyong Cheon , Joonwoo Jeong

Discotic liquid crystals can self-align to form one-dimensional semiconducting wires, many tens of microns long. In this letter, we describe the preparation of semiconducting films where the stacking direction of the disc-like molecules is…

材料科学 · 物理学 2007-05-23 C. Deibel , D. Janssen , P. Heremans , V. de Cupere , Y. Geerts , M. L. Benkhedir , G. J. Adriaenssens

A lyotropic chromonic liquid crystal (LCLC) is an orientationally ordered system made by self-assembled aggregates of charged organic molecules in water, bound by weak non-covalent attractive forces and stabilized by electrostatic…

软凝聚态物质 · 物理学 2015-06-23 Shuang Zhou , Adam J. Cervenka , Oleg D. Lavrentovich

Colloidal particles in a liquid crystal (LC) behave very differently from their counterparts in isotropic fluids. Elastic nature of the orientational order and surface anchoring of the director cause long-range anisotropic interactions and…

软凝聚态物质 · 物理学 2015-07-22 Oleg D. Lavrentovich

Chromonic liquid crystals (CLCs) are lyotropic materials which are attracting growing interest for their adaptability to living systems. A considerable body of works has been devoted to exploring their properties and applications. In this…

软凝聚态物质 · 物理学 2025-09-04 Silvia Paparini

Active colloids in liquid crystals (ACLCs) is an active matter with qualitatively new facets of behavior as compared to active matter that becomes isotropic when relaxed into an equilibrium state. We discuss two classes of ACLCs: (i)…

软凝聚态物质 · 物理学 2015-12-15 Oleg D. Lavrentovich

Transport of fluids and particles at the microscale is an important theme both in fundamental and applied science. One of the most successful approaches is to use an electric field, which requires the system to carry or induce electric…

We explore the diffusion dynamics of a Brownian microparticle in a lyotropic chromonic liquid crystal (LCLC). In the planarly oriented nematic phase, the microparticle exhibits levitation and anisotropic two-dimensional diffusion. Upon…

软凝聚态物质 · 物理学 2025-07-15 Patrycja Kadzialka , Lech Sznitko , Pawel Karpinski

We investigate the connection between the transport properties and the thermodynamics of electronic systems with a tendency to form broken-symmetry mesophases evocative of the physics of liquid crystals. Through a hydrodynamic approach to…

强关联电子 · 物理学 2009-11-13 Rafael M. Fernandes , Jörg Schmalian , Harry Westfahl

Anisotropic diffusion governs transport in a wide range of soft and biological materials, where microstructure and molecular interactions jointly shape how matter moves. Here, we quantitatively investigate anisotropic molecular transport in…

软凝聚态物质 · 物理学 2026-03-03 Kyu Hwan Choi , Jiyong Cheon , Joonwoo Jeong , Sho C. Takatori

Collective motion of self-propelled organisms or synthetic particles often termed active fluid has attracted enormous attention in broad scientific community because of it fundamentally non-equilibrium nature. Energy input and interactions…

软凝聚态物质 · 物理学 2014-03-05 Shuang Zhou , Andrey Sokolov , Oleg D Lavrentovich , Igor S Aranson

Finding new ionic conductors that enable significant advancements in the development of energy-storage devices is a challenging goal of current material science. Aside of material classes as ionic liquids or amorphous ion conductors, the…

材料科学 · 物理学 2015-09-02 K. Geirhos , P. Lunkenheimer , M. Michl , D. Reuter , A. Loidl

A liquid crystal optical device made of an optically anisotropic heterostructure is considered. The device consists of a cholesteric liquid crystal (CLC) layer sandwiched by two phase-shifting anisotropic layers of a nematic liquid crystal…

Lyotropic liquid crystals can display rich phase behaviour and self-organisation, yet the physical principles underlying their self-assembly into large scale patterns remains understudied. Here, we combine theory, simulations and…

软凝聚态物质 · 物理学 2026-02-12 A. Bensabat , O. Skelton , J. Arlt , M. Bjelogrlic , D. Marenduzzo , G. Negro , T. N. Shendruk , T. A. Wood

Chromonic liquid crystals are lyotropic nematic phases whose applications span from food to drug industries. It has recently been suggested that the elastic energy density governing the equilibrium distortions of these materials may be…

软凝聚态物质 · 物理学 2024-12-12 Silvia Paparini , Epifanio G. Virga

Electrically-controlled dynamics of fluids and particles at microscales is a fascinating area of research with applications ranging from microfluidics and sensing to sorting of biomolecules. The driving mechanisms are electric forces acting…

软凝聚态物质 · 物理学 2015-06-22 Israel Lazo , Chenhui Peng , Jie Xiang , Sergij V. Shiyanovskii , Oleg D. Lavrentovich

Using atomistic molecular dynamics simulation we study the discotic columnar liquid crystalline (LC) phases formed by a new organic compound having Hexa-peri-Hexabenzocoronene (HBC) core with six pendant oligothiophene units recently…

软凝聚态物质 · 物理学 2015-10-28 Saientan Bag , Vishal Maingi , Prabal K Maiti , Joseph Yelk , Matthew A. Glaser , David M. Walba , Noel A. Clark
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