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Recent Advances in Colloidal and Interfacial Phenomena Involving Liquid Crystals

Journal Article · · Langmuir
DOI:https://doi.org/10.1021/la103301d· OSTI ID:1603403
 [1];  [2]
  1. Univ. of Wisconsin, Madison, WI (United States); Cornell University
  2. Univ. of Wisconsin, Madison, WI (United States)
This feature article presents recent advances in several areas of research involving the interfacial ordering of liquid crystals (LCs). The initial advance revolves around the ordering of LCs at bio/chemically functionalized surfaces. Whereas the majority of past studies of surface-induced ordering of LCs have involved surfaces of solids that present a limited diversity of chemical functional groups (surfaces at which van der Waals forces dominate surface-induced ordering), recent studies have moved to investigate the ordering of LCs on chemically complex surfaces. For example, surfaces decorated with biomolecules (e.g., oligopeptides and proteins) and transition-metal ions have been investigated, leading to an understanding of the roles that metal-ligand coordination interactions, electrical double layers, acid-base interactions, and hydrogen bonding can play in the interfacial ordering of LCs. The opportunity to create chemically responsive LCs capable of undergoing ordering transitions in the presence of targeted molecular events (e.g., ligand exchange around a metal center) has emerged from these fundamental studies. A second advance has focused on investigations of the ordering of LCs at interfaces with immiscible isotropic fluids, particularly water. In contrast to prior studies of surface-induced ordering of LCs on solid surfaces, LC-aqueous interfaces are deformable and molecules at these interfaces exhibit high levels of mobility and thus can reorganize in response to changes in the interfacial environment. A range of fundamental investigations involving these LC-aqueous interfaces have revealed that (i) the spatial and temporal characteristics of assemblies formed from biomolecular interactions can be reported by surface-driven ordering transitions in the LCs, (ii) the interfacial phase behavior of molecules and colloids can be coupled to (and manipulated via) the ordering (and nematic elasticity) of LCs, and (iii) the confinement of LCs leads to unanticipated size-dependent ordering (particularly in the context of LC emulsion droplets). The third and final advance addressed in this article involves interactions between colloids mediated by LCs. Recent experiments involving microparticles deposited at the LC-aqueous interface have revealed that LC-mediated interactions can drive interfacial assemblies of particles through reversible ordering transitions (e.g., from 1D chains to 2D arrays with local hexagonal symmetry). In addition, recent single-nanoparticle measurements suggest that the ordering of LCs about nanoparticles differs substantially from micrometer-sized particles and that the interactions between nanoparticles mediated by the LCs are far weaker than predicted by theory (sufficiently weak that the interactions are reversible and thus enable self-assembly). Finally, LC-mediated interactions between colloidal particles have also been shown to lead to the formation of colloid-in-LC gels that possess mechanical properties relevant to the design of materials that interface with living biological systems. Overall, these three topics serve to highlight the broad opportunities that exist to do fundamental interfacial science and discovery-oriented research involving LCs.
Research Organization:
Univ. of Chicago, IL (United States); Univ. of Wisconsin, Madison, WI (United States)
Sponsoring Organization:
Army Research Office (ARO); National Institutes of Health (NIH); National Science Foundation (NSF); USDOE Office of Science (SC), Basic Energy Sciences (BES) (SC-22)
Grant/Contract Number:
SC0004025
OSTI ID:
1603403
Journal Information:
Langmuir, Journal Name: Langmuir Journal Issue: 10 Vol. 27; ISSN 0743-7463
Publisher:
American Chemical SocietyCopyright Statement
Country of Publication:
United States
Language:
English

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Skin Delivery of Kojic Acid-Loaded Nanotechnology-Based Drug Delivery Systems for the Treatment of Skin Aging journal January 2013
Reversible Switching of Liquid Crystalline Order Permits Synthesis of Homogeneous Populations of Dipolar Patchy Microparticles journal August 2014
Double Twisted Photonic Honeycomb Frameworks with Mesoporous Structures journal January 2019
Flüssigkristalline Ordnung als Konzept in den Materialwissenschaften: von Halbleitern zu funktionalen Bauteilen journal July 2013
Liquid-Crystalline Ordering as a Concept in Materials Science: From Semiconductors to Stimuli-Responsive Devices journal July 2013
Aptamer based bare eye detection of kanamycin by using a liquid crystal film on a glass support journal July 2017
Shape, chirality and internal order of freely suspended nematic nanodroplets journal January 2012
Spontaneous formation of micrometer-scale liquid crystal droplet patterns on solid surfaces and their sensing applications journal January 2013
Morphology of elastic nematic liquid crystal membranes journal January 2017
Thermotropic liquid crystal films for biosensors and beyond journal January 2017
Detection of sulfadimethoxine using optical images of liquid crystals journal January 2019
Mesoscopic simulations of temperature-dependent anchoring and wetting behavior at aqueous–liquid crystal interfaces in the presence of a rod–coil amphiphilic monolayer journal January 2018
Bending nematic liquid crystal membranes with phospholipids journal January 2018
Applications of liquid crystals in biosensing and organic light-emitting devices: future aspects journal July 2016
Ordering nano- and microparticles assemblies with liquid crystals journal December 2013
Stokes-Einstein diffusion of colloids in nematics journal July 2012
Impact of spherical nanoparticles on nematic order parameters journal April 2018
Stokes-Einstein diffusion of colloids in nematics text January 2014
Impact of spherical nanoparticles on the nematic order parameter text January 2018

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