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Advances of KOtBu-Involved Reactions in Organic Synthesis From 2020 to 2025

delete2026-08-04
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R
Rui Zhang *
陈宬 cover
陈宬 (Cheng Chen) *
DOI:10.1002/tcr.70225delete
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Abstract

Abstract

En 中文
Potassium tert-butoxide (KOtBu), a strong non-nucleophilic base with a pKa value of 17.5, has emerged as a versatile and indispensable reagent in modern organic synthesis. Notably, KOtBu can promote a wide range of bond-forming transformations that conventionally rely on transition-metal catalysis, enabling the efficient construction of carbon–carbon (CC), carbon–heteroatom (CX), and heteroatom–heteroatom (XY) bonds under relative mild reaction conditions. KOtBu-mediated reactions predominantly proceed via two well-established mechanistic pathways, namely ionic and radical manifolds, wherein the reactivity of key intermediates is highly dependent on reaction conditions and exogenous additives. Compared to transition-metal catalysts, KOtBu offers prominent advantages in terms of economic cost and environmental compatibility. In this review, we systematically summarize recent advances in KOtBu-involved reactions, covering the construction of carbon–carbon (CC), carbon–nitrogen (including CN and CONH), carbon–oxygen (CO), carbon–silicon (CSi), as well as miscellaneous bonds including carbon–sulfur (CS), carbon–seleno (CSe), carbon–iodo (CI), carbon–deuterium (CD), etc. We focus on reaction development, plausible mechanistic pathways, and potential synthetic applications of these protocols in the synthesis of pharmaceuticals, agrochemicals, and functional materials. This review aims to provide an up-to-date overview of KOtBu-enabled organic transformations for organic, medicinal, and materials chemists, and to facilitate further exploration and expansion of their synthetic utility.
Keywords:
C<span class='icomoon'>?</span>C bond formation
C<span class='icomoon'>?</span>X (X = N, O/S, Si, etc.) bond formation
KOtBu
reaction mechanism and application
transition-metal-free (TM-free)

Journal

Chemical Record cover
Chemical Record
IF:
7.5
Papers:
2.1K
Citations:
9.3K

Organization

W
wuhan university of technology
Scholars:
6.0K
Papers: 1.8K
Citations: 0
H
Hubei University of Arts and Science
Scholars:
383
Papers: 192
Citations: 2.5K
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