Thin Layer Substrate

A thin layer substrate is a thin, porous coating of an adsorbent material, such as silica gel or alumina, applied to a solid plate to support the separation and analysis of chemical compounds. In thin-layer chromatography, a solvent moves through the coating by capillary action, while compounds travel at different rates according to their polarity, adsorption to the stationary phase, and solubility in the mobile phase. In biology, thin layer substrates help analyze lipids, pigments, metabolites, and other small molecules, providing a rapid visual method for comparing samples, monitoring biochemical reactions, and assessing compound purity.

Thin Layer Substrate - Related Videos

Research

JoVE Journal - Chemistry

Layer-by-layer Synthesis and Transfer of Freestanding Conjugated Microporous Polymer Nanomembranes

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Cited by 3 •

2015

In this paper we describe the interfacial synthesis of conjugated microporous polymers (CMP) on sacrificial substrates, and the dissolution of the substrate for the preparation of freestanding CMP nanomembranes. In addition, we will describe how the fragile nanomembranes can be transferred to other substrates.

Education

JoVE Lab Manual - Chemistry

Thin-Layer Chromatography - Concepts

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2020

Chromatography Chromatography is a technique used in organic chemistry to separate compounds in a mixture based on their differences in solubility between two different phases. The concept is similar to liquid-liquid extraction, except in chromatography, the two phases consist of the stationary phase and the mobile phase. The stationary phase is a solid — typically a microscale hydrogel bead — while the mobile phase is a carrier solvent. In traditional chromatography, the stationary phase is...

Thin-Layer Chromatography - Student Protocol

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2020

Source: Lara Al Hariri and Ahmed Basabrain at the University of Massachusetts Amherst, MA, USA Effects of Mobile Phase Composition on Compound SeparationExpand In this section of the lab, you will use TLC to compare how well pure hexane and a mixture of 60% hexane and 40% ethyl acetate can separate phenol, benzoic acid, and butyl phenyl ether by measuring the distance the compound traveled in each solvent. Before starting the lab, put on a lab coat, safety glasses, and nitrile gloves.

Layer-by-layer Collagen Deposition in Microfluidic Devices for Microtissue Stabilization

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Cited by 7 •

2015

The creation of functional microtissues within microfluidic devices requires the stabilization of cell phenotypes by adapting traditional cell culture techniques to the limited spatial dimensions in microdevices. Modification of collagen allows the layer-by-layer deposition of ultrathin collagen assemblies that can stabilize primary cells, such as hepatocytes, as microfluidic tissue models.

MALDI Sample Preparation: the Ultra Thin Layer Method

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Cited by 31 •

2007

This video demonstrates the preparation of an ultra-thin matrix/analyte layer for analyzing peptides and proteins by Matrix-Assisted Laser Desorption Ionization Mass Spectrometry (MALDI-MS).

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