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当双硼烷基烷烃与羧酸及其衍生物相遇时:超越传统反应性的烯醇盐/烯胺化学。

When -Diborylalkanes Meet Carboxylic Acids and Their Derivatives: Enolate/Enamine Chemistry beyond Conventional Reactivity.

作者信息

Fang Tongchang, Ren Bowen, Liu Chao

机构信息

State Key Laboratory of Coordination Chemistry, Institute of Green Chemistry and Engineering, School of Chemistry and Chemical Engineering, Nanjing University, Suzhou, Jiangsu 215163, P. R. China.

出版信息

Acc Chem Res. 2025 Jul 11. doi: 10.1021/acs.accounts.5c00373.

Abstract

ConspectusThe booming progress of organoboron chemistry has unleashed a profound revolution in the field of synthetic chemistry. Among emerging organoboron reagents, -diborylalkanes stand out as uniquely versatile platforms that unlock unconventional reaction pathways through activation of their dual boryl groups. The empty p orbitals of adjacent the boryl groups not only allow generation of α-boryl carbanionic intermediates but also enable precise selectivity controls, allowing chemists to navigate a previously inaccessible chemical space.In this Account, we summarize our systematic exploration of -diborylalkanes as multiple nucleophiles in reactions with carboxylic acid derivatives as multiple electrophiles, revealing boron enolate/enamine intermediates as linchpins for efficient functional group interconversions.Our journey began with a breakthrough in the direct deoxygenative enolization of carboxylic acids using -diborylalkanes. In that work, carboxylic acids participated in the enolization reaction as an acyl source for the first time. Electrophilic capture of the resulting boron enolates enables dual functionalization of -diborylalkanes to yield various α-functionalized ketones. Expanding this paradigm to amide systems, we discovered that amide activation follows distinct mechanistic divergences. While tertiary amides undergo B-N elimination to generate enol species, primary/secondary amides and lactams preferentially undergo B-O elimination to form enamine intermediates. This result provides a strategic blueprint for synthesizing α-functionalized ketones, enamides, and cyclic amines from common amides through substrate-controlled chemoselectivity. Revisiting the reaction of lithiated -diborylalkanes with carboxylic esters, we developed an enolate-O trapping strategy that revolutionized alkyne synthesis. Reaction of lithiated -diborylalkanes with esters generates α-boryl boron enolates, which upon α,β-[B-O] elimination with a novel trapping reagent produce alkynes with high efficiency. The versatility of this method extends to the precision synthesis of C-labeled alkynes using isotopically labeled -diborylmethane. Pursuing the chemistry of lithiated -diborylalkanes with nitriles, we achieved a remarkable atom swap in the triple bond through α-boryl enamine intermediates. The reaction cascade between lithiated -diborylalkanes and nitriles, mediated by -butyl nitrite (TBN) as a N-deleting reagent, accomplishes an efficient swap of N-to-C bonds within triple bonds. This "atom transposition" strategy expands the synthetic toolbox for accessing functionalized alkynes from readily available nitriles.Through these case studies, we demonstrate how a systematic investigation of boron effects can rewrite textbook synthesis. The developed methodologies not only solve long-standing synthetic challenges in functional group interconversion but also establish -diboryl chemistry as a conceptual framework for designing novel bond-forming processes. We anticipate that this Account will stimulate broad applications of -diborylalkane reagents in catalysis, materials science, and bioactive molecule synthesis.

摘要

概述

有机硼化学的蓬勃发展在合成化学领域引发了一场深刻的革命。在新兴的有机硼试剂中,α,α'-二硼基烷烃脱颖而出,成为独特的多功能平台,通过其双硼基的活化开启了非常规的反应途径。相邻硼基的空p轨道不仅允许生成α-硼基碳负离子中间体,还能实现精确的选择性控制,使化学家能够探索以前难以进入的化学空间。

在本综述中,我们总结了对α,α'-二硼基烷烃作为多亲核试剂与羧酸衍生物作为多亲电试剂反应的系统探索,揭示了硼烯醇盐/烯胺中间体是高效官能团相互转化的关键。

我们的探索之旅始于使用α,α'-二硼基烷烃实现羧酸直接脱氧烯醇化的突破。在该工作中,羧酸首次作为酰基源参与烯醇化反应。对所得硼烯醇盐的亲电捕获使α,α'-二硼基烷烃实现双官能化,生成各种α-官能化酮。将这一模式扩展到酰胺体系,我们发现酰胺活化遵循不同的机理分歧。叔酰胺通过B-N消除生成烯醇物种,而伯/仲酰胺和内酰胺则优先通过B-O消除形成烯胺中间体。这一结果为通过底物控制的化学选择性从常见酰胺合成α-官能化酮、烯酰胺和环胺提供了战略蓝图。重新审视锂化α,α'-二硼基烷烃与羧酸酯的反应,我们开发了一种烯醇盐-O捕获策略,彻底改变了炔烃的合成。锂化α,α'-二硼基烷烃与酯反应生成α-硼基硼烯醇盐,其与新型捕获试剂进行α,β-[B-O]消除后可高效生成炔烃。该方法的多功能性扩展到使用同位素标记的α,α'-二硼基甲烷精确合成C标记的炔烃。研究锂化α,α'-二硼基烷烃与腈的反应,我们通过α-硼基烯胺中间体在三键中实现了显著的原子交换。由亚硝酸叔丁酯(TBN)作为N消除试剂介导的锂化α,α'-二硼基烷烃与腈之间的反应级联,实现了三键内N到C键的高效交换。这种“原子换位”策略扩展了从易得腈制备官能化炔烃的合成工具箱。

通过这些案例研究,我们展示了对硼效应的系统研究如何改写教科书式的合成方法。所开发的方法不仅解决了官能团相互转化中长期存在的合成挑战,还将α,α'-二硼基化学确立为设计新型成键过程的概念框架。我们预计本综述将激发α,α'-二硼基烷烃试剂在催化、材料科学和生物活性分子合成中的广泛应用。

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