Discotic Nanodisks

Discotic nanodisks are nanoscale, disk-shaped particles or molecular assemblies whose properties arise from their small dimensions and anisotropic geometry. In chemistry, planar building blocks can organize through noncovalent interactions such as π–π stacking, while the disk diameter, thickness, surface chemistry, and degree of alignment influence charge transport, light absorption, and interactions with surrounding materials. These features make discotic nanodisks useful for studying self-assembly and structure–property relationships, and for developing functional nanocomposites, sensors, catalytic interfaces, and optoelectronic materials. Controlling their dimensions and organization can improve performance and provide chemical strategies for designing responsive, ordered nanoscale systems.

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Research

JoVE Journal - Chemistry

Synthesis and Exfoliation of Discotic Zirconium Phosphates to Obtain Colloidal Liquid Crystals

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2016

A two dimensional model material of discotic zirconium phosphate was developed. The inorganic crystal with lamellar structure was synthesized by hydrothermal, reflux, and microwave-assisted methods. On exfoliation with organic molecules, layered crystals can be converted to monolayers, and nematic liquid crystal phase was formed at sufficient concentration of monolayers.

Formulation and Characterization of Bioactive Agent Containing Nanodisks

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2023

Here, we describe the production and characterization of bioactive agents containing nanodisks. Amphotericin B nanodisks are taken as an example to describe the protocol in a stepwise manner.

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