Monolayer Formation

Monolayer formation is the process of creating a single, continuous layer of atoms, molecules, or particles on a surface, enabling precise control of interfacial chemistry and material properties. In chemistry, molecules typically adsorb onto a substrate and organize through surface interactions, such as covalent bonding, electrostatic attraction, or van der Waals forces, until the available sites become covered. Monolayers can modify wettability, conductivity, reactivity, and biocompatibility, making them valuable in chemical sensors, catalysis, corrosion protection, molecular electronics, and nanomaterial fabrication. Studying their formation also clarifies how molecular structure and assembly conditions determine surface performance.

Monolayer Formation - Related Videos

Research

JoVE Journal - Bioengineering

Synthesis, Assembly, and Characterization of Monolayer Protected Gold Nanoparticle Films for Protein Monolayer Electrochemistry

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Cited by 1 •

2011

Alkanethiolate stabilized gold colloids known as monolayer protected clusters (MPCs) are synthesized, characterized, and assembled into thin films as an adsorption interface for protein monolayer electrochemistry of simple redox protein like Pseudomonas aeruginosa azurin (AZ) and cytochrome c (cyt c).

Antifouling Self-assembled Monolayers on Microelectrodes for Patterning Biomolecules

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Cited by 3 •

2009

We present a procedure for forming a poly(ethylene glycol) self-assembled monolayer (PEG-SAM) on a silicon substrate with gold microelectrodes. The PEG-SAM is formed in a single step and prevents biofouling on silicon and gold surfaces. Electrophoresis is then used for patterning biomolecules down to the nanoscale.

Monolayer Contact Doping of Silicon Surfaces and Nanowires Using Organophosphorus Compounds

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Cited by 9 •

2013

A detailed procedure for surface doping of Silicon interfaces is provided. The ultra-shallow surface doping is demonstrated by using phosphorus containing monolayers and rapid annealing process. The method can be used for doping of macroscopic area surfaces as well as nanostructures.

Assessing Transcytosis of E. coli Across Intestinal Epithelial Monolayers

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2025

Source: Islam, A., et al., Assessment of Intestinal Transcytosis of Neonatal Escherichia coli Bacteremia Isolates. J. Vis. Exp. (2023)This video demonstrates the procedure for assessing transcytosis of neonatal Escherichia coli across intestinal epithelial monolayers using transwell inserts, electrical resistance measurement, and bacterial quantification.

Developing a Bacterial Monolayer Biofilm Using an Electrochemical Reactor

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2026

Source: Tokunou, Y. et. al., Electrochemical Detection of Deuterium Kinetic Isotope Effect on Extracellular Electron Transport in Shewanella oneidensis MR-1. J. Vis. Exp. (2018)This video demonstrates the assembly and operation of an electrochemical reactor model designed to simulate biofilm formation on electrode surfaces. Controlled electrochemical stimulation promotes microbial adhesion, leading to the gradual development of a bacterial monolayer biofilm.

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