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Meeting Materials Science & Technology 2020
Symposium Controlled Synthesis, Processing, and Applications of Structural and Functional Nanomaterials
Presentation Title Rheological Dynamics of Liquid Crystal-coupled Nanocomposites under Influence of Thermal Gradients
Author(s) Albree R. Weisen, Harini Sridharan, Joshua Seylar, Ruel McKenzie
On-Site Speaker (Planned) Albree R. Weisen
Abstract Scope Presented in this study is the synthesis and characterization of heat flux effects on the rheological properties of liquid crystal-coupled silica nanocomposites (Si-LCNCs) dispersed in an isotropic medium. To understand the impact of thermal flux on the rheological properties of the nanocomposite, a customized thermal flux system is integrated into a torsional shear rheometer. Of particular interest is the concentration dependent behavior under these conditions. At low concentrations, solvent-particle interactions are typically dominant, causing thermophoresis to occur and thereby impacting rheological behavior. Conversely, at higher concentrations particle-particle interactions will begin to dominate, limiting thermophoresis which may lead to emergent behavior from the induced thermal stress. However, what is not apparent is the mode by which heat transfer properties are impacted by shear. This study will present some of the phenomenological findings on the interrelationships between heat transfer and suspension flow.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Chemical Pre-intercalation Synthesis and Exfoliation of Bilayered Vanadium Oxides for Energy Storage Applications
Control Over Structure and Chemistry Across Multiple Lengthscales in Fe-Si-Ge-Based Thermoelectrics
d-Spacing Effect on the Electrochemical Performance of MXene in Organic and Room Temperature Ionic Liquids
Direct Synthesis of Nanoclusters from Cu Nanowires
Effect of Cation Pre-intercalation on the Electrochemical Performance of Multilayer Ti3C2 MXene in Aqueous Electrolyte
Explore Different Roles of Catalysts in the Growth of Si-based Nanostructures
Introductory Comments: Controlled Synthesis, Processing, and Applications of Structural and Functional Nanomaterials
Light Transmission Modulation in Ceramics through Mesoscale Modelling
Multiscale Modeling of Radiation-induced Precipitation Hardening by Cu Nanoclusters in Fe-Cu Alloys
Nanocomposites with Extremely High Fractions of Nanomaterials via Infiltration of Polymers into Nanoparticle Packings
Oxide Nucleation and Growth during In Situ Oxidation of Cu and Cu Alloys
Panchromatic Light Absorption in CdSe/CdS Coated SnO2 Nanowires for Solar-fuel Conversion
Purification of Carbon Nanotube Yarns via Incandescent Annealing
Rheological Dynamics of Liquid Crystal-coupled Nanocomposites under Influence of Thermal Gradients
The Formation Mechanism of TiO2 Polymorphs under Hydrothermal Conditions
Towards Superhard Binderless Nanocrystalline Tungsten Carbide
ZnO Nanoparticle-Poly(methyl methacrylate) Hybrid Ultraviolet Shielding Films

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