Proton Transfer Reactions

Proton transfer reactions are chemical processes in which a hydrogen ion, or proton, moves from one species to another, forming the basis of Brønsted–Lowry acid–base chemistry. During the reaction, an acid donates a proton to a base, producing the acid’s conjugate base and the base’s conjugate acid; solvent properties, molecular structure, and relative acid–base strength influence the equilibrium. These reactions help explain neutralization, buffer action, and pH control in aqueous and nonaqueous systems. Understanding proton transfer is essential for interpreting reaction mechanisms, predicting chemical behavior, and designing processes in analytical, biological, environmental, and industrial chemistry.

Proton Transfer Reactions - Related Videos

Education

JoVE Science Education - Environmental Sciences

Proton Exchange Membrane Fuel Cells

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2023

Source: Laboratories of Margaret Workman and Kimberly Frye - Depaul University The United States consumes a large amount of energy – the current rate is around 97.5 quadrillion BTUs annually. The vast majority (90%) of this energy comes from non-renewable fuel sources. This energy is used for electricity (39%), transportation (28%), industry (22%), and residential/commercial use (11%). As the world has a limited supply of these non-renewable sources, the United States (among others) is...

Energy Transfer in Chemical Reactions

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2023

Chemical reactions require sufficient energy to cause the matter to collide with enough precision and force that old chemical bonds can be broken and new ones formed. In general, kinetic energy is the form of energy powering any type of matter in motion. Imagine a person building a brick wall. The energy it takes to lift and place one brick on top of another is the kinetic energy—the energy matter possesses because of its motion. Once the wall is in place, it stores potential energy. Potential...

Research

JoVE Journal - Engineering
Free Sample

Proton Transfer and Protein Conformation Dynamics in Photosensitive Proteins by Time-resolved Step-scan Fourier-transform Infrared Spectroscopy

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Cited by 21 •

2014

Key steps of protein function, in particular backbone conformational changes and proton transfer reactions, often take place in the microsecond to millisecond time scale. These dynamical processes can be studied by time-resolved step-scan Fourier-transform infrared spectroscopy, in particular for proteins whose function is triggered by light.

Isotopic Effect in Double Proton Transfer Process of Porphycene Investigated by Enhanced QM/MM Method

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2019

A protocol that uses enhanced QM/MM method to investigate the isotopic effect on the double proton transfer process in porphycene is presented here.

Acids, Bases and Neutralization Reactions

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2020

An acid-base reaction is one in which a hydrogen ion, H+, is transferred from one chemical species to another. Such reactions are of central importance to numerous natural and technological processes, ranging from the chemical transformations within cells or lakes and oceans to the industrial-scale production of fertilizers, pharmaceuticals, and other substances essential to the society. There are several ways of defining an acid. In the context of aqueous solutions, an acid is a substance...

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