Schlenk Vessel Reaction

A Schlenk vessel reaction is a chemical transformation performed in a specialized flask that allows reagents to be handled under controlled vacuum or an inert-gas atmosphere, protecting sensitive compounds from oxygen and moisture. The vessel connects to a Schlenk line, where repeated evacuation and backfilling with nitrogen or argon removes air before reagents are combined; a stopcock then maintains the selected atmosphere during stirring, heating, or cooling. This technique is central to organometallic chemistry and the preparation of air- or moisture-sensitive catalysts, intermediates, and materials, improving reaction reproducibility and enabling chemistry that cannot be performed safely in open laboratory conditions.

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JoVE Science Education - Chemistry

Schlenk Lines Transfer of Solvents

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2023

Source: Hsin-Chun Chiu and Tyler J. Morin, laboratory of Dr. Ian Tonks—University of Minnesota Twin Cities Schlenk lines and high vacuum lines are both used to exclude moisture and oxygen from reactions by running reactions under a slight overpressure of inert gas (usually N2 or Ar) or under vacuum. Vacuum transfer has been developed as a method separate solvents (other volatile reagents) from drying agents (or other nonvolatile agents) and dispense them to reaction or storage vessels while...

Handling Air- and Water-Sensitive Chemicals Using a Schlenk Line

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2023

Robert M Rioux, Ajay Sathe, Zhifeng Chen, Pennsylvania State University, University Park, PA The use of reagents sensitive to oxidation or moisture necessitates the use of air-free techniques. A Schlenk line is a routinely used glass apparatus to perform air and moisture free manipulations in a chemical laboratory1. The Schlenk line is widely utilized by many chemists since it allows them conduct air or water sensitive reactions even without the expense and restriction of a glove box. The...

Synthesis Of A Ti(III) Metallocene Using Schlenk Line Technique

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2023

Source: Tamara M. Powers, Department of Chemistry, Texas A&M University Inorganic chemists often work with highly air- and water-sensitive compounds. The two most common and practical methods for air-free synthesis utilize either Schlenk lines or gloveboxes. This experiment will demonstrate how to perform simple manipulations on a Schlenk line with a focus on solvent preparation and transfer. Through the synthesis of a reactive Ti(III) metallocene complex, we will demonstrate a new, simple...

Conducting Reactions Below Room Temperature

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2023

Source: Laboratory of Dr. Dana Lashley - College of William and Mary Demonstration by: Matt Smith When new bonds are formed in the course of a chemical reaction, it requires that the involved species (atoms or molecules) come in very close proximity and collide into one another. The collisions between these species are more frequent and effective the higher the speed at which these molecules are moving. A widely used rule of thumb, which has its roots in the Arrhenius equation1, states that...

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...

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