サインイン

The anti-Markovnikov addition of hydrogen halides to an alkene is thermodynamically feasible only with HBr. The radical addition reaction with other hydrogen halides like HCl and HI is thermodynamically unfavorable.

Figure1

Thermodynamic factors

The temperature influences the spontaneity of a reaction, which can be evaluated based on the change in the Gibbs free energy, ΔG. If the change in Gibbs free energy, ΔG, is negative, the reaction occurs spontaneously. As shown below, ΔG can be evaluated directly from the values of the two terms, ΔH and −TΔS.

Figure2

The thermodynamic feasibility of anti-Markovnikov addition with HBr can be predicted from each propagation step involved in the radical mechanism.

In the first propagation step of the radical reaction, the ∆G sign is determined by the competition between the enthalpy and the entropy terms. At lower temperatures, radical addition with HBr and HCl dominates the enthalpy term. Consequently, ΔG is negative, indicating that the reaction is thermodynamically favorable. However, at high temperatures, the reaction is endothermic and thermodynamically unfavorable. In contrast, with HI, irrespective of temperature, both the enthalpy and entropy terms are positive. As a result, ∆G becomes positive, signifying that the reaction is thermodynamically unfavorable.

In the second propagation step, the entropy term is close to zero as the number of reactants and product molecules are equal, meaning that the ∆G sign depends on the enthalpy term. Since the enthalpy term dominates for HBr and HI, the reaction is exothermic and thermodynamically favorable. However, with HCl, ∆G is positive, meaning that the reaction is endothermic and thermodynamically unfavorable.

In summary, the two propagation steps in the reaction are thermodynamically favorable only with HBr.

タグ

Anti Markovnikov AdditionHydrogen HalidesHBrHClHIThermodynamic FeasibilityGibbs Free EnergyEnthalpyEntropyRadical MechanismReaction SpontaneityExothermic ReactionEndothermic ReactionThermal Factors

章から 20:

article

Now Playing

20.24 : Radical Anti-Markovnikov Addition to Alkenes: Thermodynamics

ラジカル化学

1.7K 閲覧数

article

20.1 : ラジカル:電子構造と幾何学

ラジカル化学

3.8K 閲覧数

article

20.2 : 電子常磁性共鳴(ESR)分光法:有機ラジカル

ラジカル化学

2.3K 閲覧数

article

20.3 : ラディカルフォーメーション:概要

ラジカル化学

2.0K 閲覧数

article

20.4 : ラジカル形成:ホモリシス

ラジカル化学

3.4K 閲覧数

article

20.5 : ラディカル・フォーメーション:抽象化

ラジカル化学

3.3K 閲覧数

article

20.6 : ラジカルフォーメーション:追加

ラジカル化学

1.6K 閲覧数

article

20.7 : ラジカルフォーメーション:エリミネーション

ラジカル化学

1.6K 閲覧数

article

20.8 : ラジカルリアクティブ:概要

ラジカル化学

2.0K 閲覧数

article

20.9 : ラジカル反応性:立体効果

ラジカル化学

1.9K 閲覧数

article

20.10 : ラジカル反応性:濃縮効果

ラジカル化学

1.5K 閲覧数

article

20.11 : ラジカル反応性:求電子ラジカル

ラジカル化学

1.8K 閲覧数

article

20.12 : ラジカル反応性:求核ラジカル

ラジカル化学

2.0K 閲覧数

article

20.13 : ラジカル反応性:分子内反応性 vs 分子間反応性

ラジカル化学

1.7K 閲覧数

article

20.14 : ラジカルオート酸化

ラジカル化学

2.1K 閲覧数

See More

JoVE Logo

個人情報保護方針

利用規約

一般データ保護規則

研究

教育

JoVEについて

Copyright © 2023 MyJoVE Corporation. All rights reserved