Walden Inversion - Definition, Reaction, Mechanism & Explanation with Examples (2024)

What is Walden Inversion?

The phenomenon of inversion of configuration during a chemical reaction is known as Walden Inversion. Generally, Walden inversion is referred to as optical inversion. The inversion of configuration may or may not lead to the change in direction of rotation.

Walden’s inversion is the reversal of a chiral centre in a molecule in a chemical reaction. Since the molecule can form two enantiomers around the chiral centre, the Walden inversion transforms the structure of the molecule from one enantiomeric form to another.

Table of Contents

  • Walden Inversion Reaction
  • Walden Inversion Mechanism
  • Walden Inversion Explanation
  • Frequently Asked Questions

Walden Inversion Reaction

In 1896, Walden reported an inversion of optical rotation in the conversion of malic to chlorosulfonic acid by reaction with phosphorus pentachloride.

Walden Inversion - Definition, Reaction, Mechanism & Explanation with Examples (1)

Walden inversion has been extensively studied with numerous reactants and optically active substances. Perhaps the most satisfactory explanation for the change in configuration was suggested by Werner in 1911 and is commonly known as the opposite face mechanism for the Walden inversion.

For example,

Walden Inversion - Definition, Reaction, Mechanism & Explanation with Examples (2)

A Walden inversion occurs at a tetrahedral carbon atom during an SN2 reaction when the entry of the reagent and the departure of the leaving group are synchronous. The result is an inversion of configuration at the centre under attack.

Walden Inversion Mechanism

The stereochemical course of an SN2 reaction’s inversion of configuration is explained below.

Nearly 100 years ago, Paul Walden demonstrated that (+) malic acid could be converted to either (+) or (-) chlorosuccinic acid (2-chlorobutanedioic acid) with different reagents. Although the absolute configuration of each substance was not known at the time, it was clear that one of these processes occurred by inversion of configuration at the stereocenter and the other by retention.

A series of investigations definitely showed that the stereochemistry of a chiral substance is normally inverted during the course of an SN2 reaction.

Walden Inversion - Definition, Reaction, Mechanism & Explanation with Examples (3)

To commend Walden for his work on the stereochemical course of substitution reactions, we sometimes refer to the stereochemistry of an SN2 reaction as Walden inversion.

Walden Inversion - Definition, Reaction, Mechanism & Explanation with Examples (4)

The presence or absence of an asymmetric or a chiral carbon atom in a molecule is not only a criterion of dis-symmetry or chirality, and hence, enantiomerism, But it is certain that most of the molecules have chiral carbon atoms are optically active.

Walden’s inversion was to develop a scheme for deciding by which mechanism a particular reaction had proceeded or would proceed. Ingold and co-workers showed how to distinguish whether a substitution occurred by the synchronous or the sequential route by kinetic criteria. They then went on to explore the structural features and reaction conditions that promoted one or other of these mechanistic routes.

Walden Inversion - Definition, Reaction, Mechanism & Explanation with Examples (5)

Basically, which mechanism occurs is decided by which transition state is lower in energy. This can be analysed in structural terms, concerning things such as the energetic cost of breaking the initial bond, the steric environment of the transition states and the potentially stabilising effects of the proposed solvent etc. Typically, in synthesis one wants to employ the stereospecific SN2 mechanism because it gives a single predictable product.

Walden Inversion Explanation

Stereochemistry refers to the arrangement of atoms in space, and most particularly to the “handedness” of chemical compounds. When a carbon atom is bound to four distinct groups, those groups are arranged about the carbon as if they were at the vertices of a tetrahedron with the carbon at its centre. As a result, there are two distinct such arrangements possible – these are non-superimposable mirror images of one another called enantiomers. Enantiomers have very similar chemical structures and so their chemical and physical behaviour is also very similar.

However, there are some chemical differences between them, and they have different optical activities, they rotate plane-polarised light in opposite directions. Walden has shown that it was possible by a series of reactions to convert an optically active substance into its enantiomer. Chemists at the time had assumed that substitution reactions of the sort Walden employed would proceed in a way that either kept the spatial arrangement the same or perhaps randomised the spatial arrangement.

Walden showed that at some point during his series of reactions, the groups around carbon had to systematically shift from one spatial arrangement to another. In the forty years after the discovery of Walden inversion, many additional inversions were discovered, however, not all substitution reactions on optically active starting products led to inversion, some resulted in the retention of configuration and others led to a mix of enantiomers products.

Frequently Asked Questions – FAQs

Q1

What is an inversion reaction?

Inversion, in chemistry, of the spatial rearrangement of atoms or groups of atoms in a dissymmetric molecule, gives rise to a molecular structure which is a mirror image of the original molecule.

Q2

What are retention and inversion?

Retention refers to the phase in which the molecular composition is preserved during the reaction. Inversion refers to the mechanism in which the structure of the molecules is changed during the course of the reaction.

Q3

What do you mean by Walden inversion?

Walden’s inversion is the reversal of a chiral centre in a molecule in a chemical reaction. Since a molecule can form two enantiomers around a chiral centre, the Walden inversion converts the configuration of the molecule from one enantiomeric form to another.

Q4

Why does inversion occur in Sn2?

Configuration reversal usually occurs when organic compounds undergo a nucleophilic substitution reaction by an SN2 mechanism. A Nucleophile (an electron-rich species with an affinity to an electron-deficient centre) can strike the stereocenter in two directions, such as from the front or from the back.

Q5

Why is iodine a better leaving group than chlorine?

Iodine is a better leaving group than other halogen atoms due to its larger size. Due to its larger size, charge density decreases and it becomes stable. So, it’s a better leaving group.

Q6

What is retention in configuration?

A system in which an atom’s relative configuration or absolute configuration is preserved. If the atom in question is a stereocentre, structure retention normally (but not always) shifts the absolute configuration of R to R and S to S.

Q7

What is relative configuration?

The location in space of atoms or groups with respect to (i.e. relative to) everything else in the molecule. Compare this with an absolute structure that is independent of atoms or groups in the molecule elsewhere.

Q8

What is the difference between conformation and configuration?

Conformation is the set of potential forms that a molecule can only create by way of single bond rotation. Configuration is the relative location in a molecule of atoms and can be altered purely by cleaving and creating new chemical bonds.

Walden Inversion - Definition, Reaction, Mechanism & Explanation with Examples (2024)

FAQs

Walden Inversion - Definition, Reaction, Mechanism & Explanation with Examples? ›

Since a molecule can form two enantiomers around a stereogenic center, the Walden inversion converts the configuration of the molecule from one enantiomeric form to the other. For example, in an SN2 reaction, Walden inversion occurs at a tetrahedral carbon atom.

What is Walden inversion with an example? ›

Walden's inversion is the reversal of a chiral centre in a molecule in a chemical reaction. Since the molecule can form two enantiomers around the chiral centre, the Walden inversion transforms the structure of the molecule from one enantiomeric form to another.

What is an example of an inversion reaction? ›

Let's look at why the hydrolysis of sucrose is called inversion. Sucrose has a dextrorotatory effect. However, following the hydrolysis reaction, glucose (which is dextrorotatory) and fructose (which is laevorotatory) are formed. As a result, sucrose hydrolysis is an inversion reaction.

What is the mechanism of inversion of the SN2 reaction? ›

SN2 reaction mechanism requires the attack of nucleophile from the back side of the carbon atom. So the product assumes a stereochemical position opposite to the leaving group originally occupied. This is called inversion of configuration.

What is another name for the Walden inversion? ›

Optical inversion is the common name for Walden inversion. The inversion of the configuration may or may not result in a shift in the rotational direction.

What are the 5 examples of inversion? ›

Examples
  • Never again will you do that.
  • Never a day had she missed her lessons.
  • Rarely have I eaten better food.
  • Hardly ever does he come to class on time.
  • Not until a frog develops lungs does it leave the water and live on the land.

What is a real world example of an inversion? ›

Temperature Inversion Definition

Most of the time, for example, the Earth's surface is warm during the day and air gets colder the higher you go. A temperature inversion usually happens during the night when the ground temperature drops because it's no longer heated by the sun.

What is the mechanism of inversion? ›

The term "inversion of mechanism" refers to the practice of fixing one link at a time in a kinematic chain to get different mechanisms. In the four bar linkage mechanism, it is expected that the number of inversions will equal the total number of links in the kinematic chain.

What is the explanation of SN2 mechanism? ›

The SN2 mechanism is a one-step process in which a nucleophile attacks the substrate, and a leaving group, L, departs simultaneously. Because the reaction occurs in one step, it is concerted. The substrate and the nucleophile are both present in the transition state for this step.

What is the mechanism of action of SN2? ›

In medicine, a term used to describe how a drug or other substance produces an effect in the body. For example, a drug's mechanism of action could be how it affects a specific target in a cell, such as an enzyme, or a cell function, such as cell growth.

Is the Walden inversion SN1 or SN2 reaction? ›

The SN2 reaction causes inversion of stereochemical configuration, known as Walden inversion. It was first observed by chemist Paul Walden in 1896.

Which compound will give Walden inversion? ›

For Walden inversion to take place, the reactant has to be optically active or more specifically the carbon atom to which the leaving group (-Br) is attached should be a stereo-center. ${ C }_{ 4 }{ H }_{ 9 }-CHD-Br$ is an optically active compound and hence will give Walden inversion.

What is Walden's rule? ›

An empirical rule suggested by P. Walden (1863–1957) concerning ions in solutions, stating that the product of the molar conductivity, Λm, and the viscosity, η, is approximately constant for the same ions in different solvents.

What is an example of an inversion poem? ›

Poetic inversion is a feature of lots of writing, not just poetry. “Bang, bang went the drum,” “green were my jealous eyes,” and “cool was the summer breeze” are all examples of inversions.

What is an example of an inversion in humans? ›

One well known example of an inversion mutation in humans is hemophilia, a disease that inhibits the ability of blood to clot. Researchers discovered the gene responsible for hemophilia years ago, but also found that DNA from a person with hemophilia had the same genetic makeup as a person without the disease.

What is an example of an inversion in music theory? ›

A chord (triad, seventh chord, or any other chord) with the third scale degree in the bass and the root somewhere above is said to be in first inversion. For example, a C major chord instead of being played C-E-G, would be played E-G-C (3-5-1), or E-C-G (3-1-5).

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