Physical Gel Formation

Physical gel formation is the creation of a three-dimensional, solid-like network when molecules or particles associate through reversible, noncovalent interactions rather than permanent chemical crosslinks. Gelation occurs as these building blocks assemble into interconnected structures that immobilize a liquid, with the final properties governed by factors such as concentration, temperature, pH, and ionic strength. In environmental science, physical gels can serve as absorbent or filtration materials for removing contaminants from water and controlling the transport of dissolved substances. Their reversible structure can also support processing, regeneration, and adaptation, making physical gel formation relevant to sustainable materials, wastewater treatment, and responsive environmental technologies.

Physical Gel Formation - Related Videos

Research

JoVE Journal - Environment

Thermal Scanning Conductometry (TSC) as a General Method for Studying and Controlling the Phase Behavior of Conductive Physical Gels

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Cited by 1 •

2018

The kinetics of the cooling process defines the properties of ionic gels based on low molecular weight gelators. This manuscript describes the usage of thermal scanning conductometry (TSC), which obtains full control over the gelation process, along with in situ measurements of the samples' temperature and conductivity.

Education

JoVE Science Education - Basic Biology

Gel Purification

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2023

Gel purification is used to recover DNA fragments after electrophoretic separation. DNA recovery from an agarose gel includes three basic steps: binding, washing and eluting from a silica column. DNA is believed to bind to silica in the presence of high salt via a salt bridge. Following binding, DNA is washed of impurities and eluted under low salt conditions disrupting this interaction. This video goes through a step-by-step, generalized procedure for cutting out a band from the gel, gel...

Using a Fluorescent PCR-capillary Gel Electrophoresis Technique to Genotype CRISPR/Cas9-mediated Knockout Mutants in a High-throughput Format

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Cited by 6 •

2017

The genotyping technique described here, which couples fluorescent polymerase chain reaction (PCR) to capillary gel electrophoresis, allows for high-throughput genotyping of nuclease-mediated knockout clones. It circumvents limitations faced by other genotyping techniques and is more cost effective than sequencing methods.

General Approach to the Physical Exam

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2023

Source: Jaideep S. Talwalkar, MD, Internal Medicine and Pediatrics, Yale School of Medicine, New Haven, CT The examination of the body is fundamental to the practice of medicine. Since the Roman Empire, physicians have described the connection between alterations in function of specific parts of the body and specific disease states and have sought to further scientific understanding to improve bedside diagnosis. However, in this modern age of increasing technology within medical diagnostics, it...

Solution Formation

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2020

There is no one solvent that can dissolve every type of solute. Some substances that readily dissolve in a certain solvent might be insoluble in a different solvent. A simple way to predict which substances dissolve in which solvent is the phrase "like dissolves like". This means that polar substances, such as salt and sugar, dissolve in a polar substance like water. In contrast, non-polar substances are more soluble in non-polar solvents such as carbon tetrachloride. This selective solubility...

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