Recent progress in the reduction of benzene derivatives and their industrial applications

Mohammad Tahir Aminzai, Nangyallai Azizi, Yahya Nural, Erdal Yabalak
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Abstract

Cyclohexane (CHA), cyclohexene (CHE), and 1,4-cyclohexadiene (CHD) derivatives have a wide variety of applications and scope in synthetic and industrial organic chemistry. These cyclic hydrocarbons are found in a variety of natural products, including herbal plants and fruits as basic fragrance components. The extraction and isolation of these essential hydrocarbons are too complex and difficult to pursue. However, the reduction of benzene and its derivatives is an essential and effective approach for producing CHA, CHE, and CHD derivatives. To obtain CHA, CHE, and CHD derivatives, several types of reduction techniques for benzene and its derivatives have been developed over the years, including various forms of catalytic hydrogenation, Benkeser reduction, classic and many modified Birch reductions such as ammonia-free, metal-free photochemical, solvent-free, electrochemical and electride-mediated Birch reduction. In this study, the comparison of chemoselectivity, regioselectivity, reaction conditions, reduction efficiency, and environmentally acceptable approaches of these techniques used for benzene reduction are summarized.

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苯衍生物还原及其工业应用的最新进展
环己烷(CHA)、环己烯(CHE)和 1,4-环己二烯(CHD)衍生物在合成和工业有机化学中有着广泛的应用和范围。这些环状碳氢化合物作为基本香味成分存在于多种天然产品中,包括草本植物和水果。这些基本碳氢化合物的提取和分离过于复杂,难以实现。然而,苯及其衍生物的还原是生产 CHA、CHE 和 CHD 衍生物的一种重要而有效的方法。为了获得 CHA、CHE 和 CHD 衍生物,多年来人们开发了多种苯及其衍生物的还原技术,包括各种形式的催化加氢、Benkeser 还原、经典的 Birch 还原和许多改良的 Birch 还原,如无氨还原、无金属光化学还原、无溶剂还原、电化学还原和电介导的 Birch 还原。本研究总结了这些用于苯还原技术的化学选择性、区域选择性、反应条件、还原效率和环境可接受方法的比较。
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