Silicon Dioxide Substrates

Silicon dioxide substrates are solid surfaces made from SiO₂ that provide a stable, chemically tunable platform for fabricating and studying biological systems. Their hydroxyl-rich surface can interact with water, biomolecules, and coatings, while chemical functionalization adjusts surface charge, wettability, and ligand presentation. In bioengineering, these substrates support cell culture, biosensor development, microfluidic devices, and the controlled organization of proteins or other biomolecules. Because their surface properties can be engineered and characterized, silicon dioxide substrates help researchers examine cell–material interactions, improve device performance, and develop reproducible interfaces for diagnostics, tissue engineering, and fundamental biological research.

Silicon Dioxide Substrates - Related Videos

Research

JoVE Journal - Biology
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Measurement of Carbon Dioxide Production from Radiolabeled Substrates in Drosophila melanogaster

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Cited by 7 •

2016

This paper describes a method for the measurement of fuel oxidation in Drosophila melanogaster in which trace amounts of specific radiolabeled metabolic substrates are fed to flies. The exhaled radiolabeled CO2 that is a produced from fuel oxidation is collected and measured.

Research

JoVE Journal - Chemistry

Preparation of Mica and Silicon Substrates for DNA Origami Analysis and Experimentation

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Cited by 9 •

2015

Reproducible cleaning processes for substrates used in DNA origami research are described, including bench-top RCA cleaning and derivatization of silicon oxide. Protocols for surface preparation, DNA origami deposition, drying parameters, and simple experimental set-ups are illustrated.

Growth of Gold Dendritic Nanoforests on Titanium Nitride-coated Silicon Substrates

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Cited by 5 •

2019

This study presents a feasible procedure for synthesizing gold dendritic nanoforests on titanium nitride/silicon substrates. The thickness of gold dendritic nanoforests increases linearly within 15 min of a synthesis reaction.

Fabrication and Optimization of Type II Silicon Clathrate Films

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2025

The two-thermal annealing method enables the fabrication of thin films of type II semiconductor silicon clathrate. Post-synthesis treatments, including thermal pressing and reactive ion etching, were performed to improve the material properties. This approach provides an accessible pathway for fabricating tunable clathrate films suitable for next-generation electronic and photonic devices.

Stiffness Measurement of Soft Silicone Substrates for Mechanobiology Studies Using a Widefield Fluorescence Microscope

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Cited by 19 •

2018

Substrates with stiffness in the kilopascal-range are useful to study the response of cells to physiologically relevant micro-environment stiffness. Using just a widefield fluorescence microscope, the Young's modulus of soft silicone gels can be determined using an indentation with a suitable sphere.

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