电化学 C-H/C-C 键氧化:一种潜在的塑料解聚技术

IF 7 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Chemical record Pub Date : 2023-12-08 DOI:10.1002/tcr.202300331
Sadia Rani, Samina Aslam, Kiran Lal, Sobia Noreen, Khadeeja Ali Mohammed Alsader, Riaz Hussain, Bahareh Shirinfar, Nisar Ahmed
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摘要

在此,我们提供了生态友好、操作安全的电催化方法,可直接或利用水、空气、光、金属催化剂或其他媒介作为唯一的氧气供应进行选择性氧化。重金属、化学氧化剂或苛刻的条件是早期氧化裂解技术的缺点。最近发现,塑料废物解构和生物质利用的一个关键阶段是选择性活化惰性 C(sp3)-C/H(sp3)键,这仍然是抗性聚烯烃废物化学升级再循环的一个重大障碍。除使用氧气和催化剂进行化学氧化外,直接或间接电化学转化也是一种很有吸引力的替代方法。C-H/C-C 键的电化学氧化是化工和制药行业的一个重要转变。在本综述中,我们将讨论化学回收商用塑料的前沿方法,以及用于工业放大的可行的 C-C/C-H 键氧化路线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Electrochemical C−H/C−C Bond Oxygenation: A Potential Technology for Plastic Depolymerization

Herein, we provide eco-friendly and safely operated electrocatalytic methods for the selective oxidation directly or with water, air, light, metal catalyst or other mediators serving as the only oxygen supply. Heavy metals, stoichiometric chemical oxidants, or harsh conditions were drawbacks of earlier oxidative cleavage techniques. It has recently come to light that a crucial stage in the deconstruction of plastic waste and the utilization of biomass is the selective activation of inert C(sp3)−C/H(sp3) bonds, which continues to be a significant obstacle in the chemical upcycling of resistant polyolefin waste. An appealing alternative to chemical oxidations using oxygen and catalysts is direct or indirect electrochemical conversion. An essential transition in the chemical and pharmaceutical industries is the electrochemical oxidation of C−H/C−C bonds. In this review, we discuss cutting-edge approaches to chemically recycle commercial plastics and feasible C−C/C−H bonds oxygenation routes for industrial scale-up.

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来源期刊
Chemical record
Chemical record 化学-化学综合
CiteScore
11.00
自引率
3.00%
发文量
188
审稿时长
>12 weeks
期刊介绍: The Chemical Record (TCR) is a "highlights" journal publishing timely and critical overviews of new developments at the cutting edge of chemistry of interest to a wide audience of chemists (2013 journal impact factor: 5.577). The scope of published reviews includes all areas related to physical chemistry, analytical chemistry, inorganic chemistry, organic chemistry, polymer chemistry, materials chemistry, bioorganic chemistry, biochemistry, biotechnology and medicinal chemistry as well as interdisciplinary fields. TCR provides carefully selected highlight papers by leading researchers that introduce the author''s own experimental and theoretical results in a framework designed to establish perspectives with earlier and contemporary work and provide a critical review of the present state of the subject. The articles are intended to present concise evaluations of current trends in chemistry research to help chemists gain useful insights into fields outside their specialization and provide experts with summaries of recent key developments.
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