Lewis Acid Catalysis

Lewis acid catalysis is the use of an electron-pair acceptor to accelerate a chemical reaction while the catalyst is regenerated. A Lewis acid coordinates with a substrate, often by binding to a lone pair or a π bond, which increases electrophilicity, stabilizes reaction intermediates, and lowers the activation energy. Common catalysts such as aluminum chloride, boron trifluoride, and titanium compounds promote carbonyl transformations, Friedel–Crafts reactions, and cycloadditions in organic synthesis. By controlling substrate activation and reaction selectivity, Lewis acid catalysis enables efficient bond formation under milder conditions and supports the preparation of pharmaceuticals, fine chemicals, and advanced materials.

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JoVE Core - Chemistry

Lewis Acids and Bases

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2020

In 1923, G. N. Lewis proposed a generalized definition of acid-base behavior in which acids and bases are identified by their ability to accept or to donate a pair of electrons and form a coordinate covalent bond. A coordinate covalent bond (or dative bond) occurs when one of the atoms in the bond provides both bonding electrons. For example, a coordinate covalent bond occurs when a water molecule combines with a hydrogen ion to form a hydronium ion. A coordinate covalent bond also results when...

Lewis Acids and Bases

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2023

This lesson delves into Lewis acids and bases in the context of the octet rule for electron-deficient compounds. Here, the concept is discussed, emphasizing the group 13 elements like boron or aluminium. Since group 13 elements possess three valence electrons, they form trivalent compounds with a sextet of electrons and a vacant orbital for the central atom. Consequently, these electron-deficient compounds accept electrons from other species to complete their octet in a chemical reaction. They...

Lewis Acid-Base Interaction in Ph3P-BH3

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2023

Source: Tamara M. Powers, Department of Chemistry, Texas A&M University One of the goals of chemistry is to use models that account for trends and provide insights into the properties of reactants that contribute to reactivity. Substances have been classified as acids and bases since the time of the ancient Greeks, but the definition of acids and bases has been modified and expanded over the years.1 The ancient Greeks would characterize substances by taste, and defined acids as those that...

Catalysis

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2020

The presence of a catalyst affects the rate of a chemical reaction. A catalyst is a substance that can increase the reaction rate without being consumed during the process. A basic comprehension of a catalysts’ role during chemical reactions can be understood from the concept of reaction mechanisms and energy diagrams. The illustrated image represents the reaction diagrams for an endothermic chemical process progressing in the absence (red curve) and presence (blue curve) of a catalyst. Both...

Introduction to Catalysis

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2015

Source: Laboratory of Dr. Ryan Richards — Colorado School of Mines Catalysis is among the most important fields of modern technology and presently accounts for approximately 35% of the gross domestic product (GDP) and sustenance of approximately 33% of the global population through fertilizers produced via the Haber process.1 Catalysts are systems that facilitate chemical reactions by lowering the activation energy and influencing the selectivity. Catalysis will be a central technology in...

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