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Renewable resources for sustainable metallaelectro-catalysed C–H activation

机译:可持续元电子催化的C-H激活可再生资源

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摘要

The necessity for more sustainable industrial chemical processes has internationally been agreed upon. During the last decade, the scientific community has responded to this urgent need by developing novel sustainable methodologies targeted at molecular transformations that not only produce reduced amounts of byproducts, but also by the use of cleaner and renewable energy sources. A prime example is the electrochemical functionalization of organic molecules, by which toxic and costly chemicals can be replaced by renewable electricity. Unrivalled levels of resource economy can thereby be achieved via the merger of metal-catalyzed C–H activation with electrosynthesis. This perspective aims at highlighting the most relevant advances in metallaelectro-catalysed C–H activations, with a particular focus on the use of green solvents and sustainable wind power and solar energy until June 2020.
机译:在国际上达成了更多可持续的工业化学工艺的必要性。在过去十年中,科学界已经通过开发针对分子转化的新型可持续方法来回应这种迫切需要,不仅产生减少的副产品,而且还通过使用清洁剂和可再生能源。主要例子是有机分子的电化学官能化,通过可再生电力取代有毒和昂贵的化学物质。由此可以通过用电合并的金属催化的C-H激活来实现无与伦比的资源经济水平。这种观点旨在突出Metallaelaile-催化的C-H激活中最相关的进展,特别关注使用绿色溶剂和可持续风力和太阳能直到2020年6月。

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