Confined Phase Behavior

Confined phase behavior describes how substances change phase when restricted to small spaces, such as pores, channels, thin films, or droplets, where confinement can alter their properties compared with bulk materials. At nanometer scales, surface interactions, pore geometry, and limited molecular mobility influence nucleation, crystallization, melting, freezing, and fluid organization. These effects can shift phase-transition temperatures, stabilize otherwise uncommon structures, or produce distinct transport behavior. Studying confined phase behavior helps explain chemistry in porous materials, biological compartments, and microfluidic systems, while supporting the design of catalysts, separation media, sensors, and energy-storage materials.

Confined Phase Behavior - Related Videos

Research

JoVE Journal - Chemistry

Confocal Imaging of Confined Quiescent and Flowing Colloid-polymer Mixtures

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Cited by 4 •

2014

Confocal microscopy is used to image quiescent and flowing colloid-polymer mixtures, which are studied as model systems for attractive suspensions. Image analysis algorithms are used to calculate structural and dynamic metrics for the colloidal particles that measure changes due to geometric confinement.

Fabrication of Spatially Confined Complex Oxides

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Cited by 1 •

2013

We describe the use of pulsed laser deposition (PLD), photolithography and wire-bonding techniques to create micrometer scale complex oxides devices. The PLD is utilized to grow epitaxial thin films. Photolithography and wire-bonding techniques are introduced to create practical devices for measurement purposes.

Research

JoVE Journal - Chemistry
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Phase Behavior of Charged Vesicles Under Symmetric and Asymmetric Solution Conditions Monitored with Fluorescence Microscopy

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Cited by 20 •

2017

Experiments on phase separated giant unilamellar vesicles (GUVs) frequently neglect physiological solution conditions. This work presents approaches to study the effect of high-salinity buffer on liquid-liquid phase separation in charged multicomponent GUVs as a function of trans-membrane solution asymmetry and temperature.

Creating Two-Dimensional Patterned Substrates for Protein and Cell Confinement

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Cited by 5 •

2011

Self-assembled monolayers (SAMs) formed from long chain alkane thiols on gold provide well-defined substrates for the formation of protein patterns and cell confinement. Microcontact printing of hexadecanethiol using a polydimethylsiloxane (PDMS) stamp followed by backfilling with a glycol-terminated alkane thiol monomer produces a pattern where protein and cells adsorb only to the stamped hexadecanethiol region.

In Situ Visualization of the Phase Behavior of Oil Samples Under Refinery Process Conditions

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Cited by 1 •

2017

This article describes a setup and method for the in situ visualization of oil samples under a variety of temperature and pressure conditions that aim to emulate refining and upgrading processes. It is primarily used for studying isotropic and anisotropic media involved in the fouling behavior of petroleum feeds.

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