Microwave Reactor

A microwave reactor is a laboratory instrument that uses microwave energy to heat chemical reactions rapidly and under controlled conditions, making it valuable for efficient synthesis and reaction development. In chemistry, microwaves couple with polar molecules and mobile ions, producing dielectric heating throughout the reaction mixture; sealed vessels can also maintain elevated temperatures and pressures, often shortening reaction times compared with conventional heating. Microwave reactors support organic and inorganic synthesis, catalyst studies, materials preparation, and reaction optimization, while programmable control of power, temperature, pressure, and time improves reproducibility and helps researchers evaluate safer, more resource-efficient procedures.

Microwave Reactor - Related Videos

Research

JoVE Journal - Chemistry

An Inexpensive Adaptation of a Commercial Microwave Reactor for Solid Phase Peptide Synthesis

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2024

A simple, inexpensive, and novel apparatus for performing solid phase peptide syntheses in a commercial microwave reactor is presented.

Research

JoVE Journal - Chemistry
Free Sample

Non-equilibrium Microwave Plasma for Efficient High Temperature Chemistry

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Cited by 8 •

2017

This article describes a flowing microwave reactor that is used to drive efficient non-equilibrium chemistry for the application of conversion/activation of stable molecules such as CO2, N2 and CH4. The goal of the procedure described here is to measure the in situ gas temperature and gas conversion.

Education

JoVE Science Education - Basic Biology

Operation of High-pressure Reactor Vessels

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2023

Robert M Rioux, Pennsylvania State University, University Park, PA The use of gases in a synthetic chemistry laboratory is essential for carrying out a variety of highly facile and atom economical transformations. Reactions such as hydrogenation, oxidation, and amination require the use of gases like hydrogen, oxygen, and ammonia. Due to the poor solubility of these gases in typical reactant solutions, high pressures are necessary to achieve a meaningful reaction rate. Not only are these gases...

Catalytic Reactor: Hydrogenation of Ethylene

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2023

Source: Kerry M. Dooley and Michael G. Benton, Department of Chemical Engineering, Louisiana State University, Baton Rouge, LA The hydrogenation of ethylene (C2H4) to ethane (C2H6) has often been studied as a model reduction reaction in characterizing new metal catalysts.1-2 While supported nickel is not the most active metal catalyst for this reaction, it is active enough that reaction can take place at < 200°C. The reaction typically involves adsorbed, dissociated hydrogen (H2) reacting...

Liquid Phase Reactor: Sucrose Inversion

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2023

Source: Kerry M. Dooley and Michael G. Benton, Department of Chemical Engineering, Louisiana State University, Baton Rouge, LA Both batch and continuous flow reactors are used in catalytic reactions. Packed beds, which use solid catalysts and a continuous flow, are the most common configuration. In the absence of an extensive recycle stream, such packed bed reactors are typically modeled as "plug flow". The other most common continuous reactor is a stirred tank, which is assumed to be perfectly...

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