Crystalline Forms

Crystalline forms are distinct, ordered solid-state arrangements of the same chemical substance, and they can strongly influence a material’s physical and clinical performance. They arise when molecules pack into different repeating lattice structures, including polymorphs, solvates, hydrates, or salts, under conditions such as changes in solvent, temperature, pressure, or crystallization rate. In pharmaceutical development, these forms may differ in solubility, dissolution rate, stability, mechanical properties, and bioavailability. Identifying and controlling the preferred crystalline form supports consistent manufacturing, accurate dosage performance, and product stability, making solid-state characterization an important part of clinical formulation and quality assessment.

Crystalline Forms - Related Videos

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JoVE Core - Organic Chemistry

Polymer Classification: Crystallinity

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2023

Unlike ionic or small covalent molecules, polymers do not form crystalline solids due to the diffusion limitations of their long-chain structures. However, polymers contain microscopic crystalline domains separated by amorphous domains. Crystalline domains are the regions where polymer chains are aligned in an orderly manner and held together in proximity by intermolecular forces. For example, chains in the crystalline domains of polyethylene and nylon are bound together by van der Waals...

Research

JoVE Journal - Chemistry
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Synthesis of Programmable Main-chain Liquid-crystalline Elastomers Using a Two-stage Thiol-acrylate Reaction

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Cited by 107 •

2016

A novel methodology is presented to synthesize and program main-chain liquid-crystalline elastomers using commercially available starting monomers. A wide range of thermomechanical properties was tailored by adjusting the amount of crosslinker, while the actuation performance was dependent on the amount of applied strain during programming.

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JoVE Journal - Chemistry
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Microfluidic Preparation of Liquid Crystalline Elastomer Actuators

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Cited by 3 •

2018

This article describes the microfluidic process and parameters to prepare actuating particles from liquid crystalline elastomers. This process allows the preparation of actuating particles and the variation of their size and shape (from oblate to strongly prolate, core-shell, and Janus morphologies) as well as the magnitude of actuation.

Synthesis of Single-Crystalline Core-Shell Metal-Organic Frameworks

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Cited by 2 •

2023

Here, we demonstrate a protocol for the two-step synthesis of single-crystalline core-shells using a non-isostructural metal-organic framework (MOF) pair, HKUST-1 and MOF-5, which have well-matched crystal lattices.

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JoVE Journal - Engineering
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Free-form Light Actuators — Fabrication and Control of Actuation in Microscopic Scale

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2016

Here, we fabricate 3D polymeric micro/nano structures in which both the shape and the molecular alignment can be engineered with nanometer scale accuracy by the use of direct laser writing. Light induced deformation of several types of liquid crystalline elastomer microstructures can be controlled in the microscopic scale.

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