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DOI10.1126/science.aav0177
Activation of methane to CH3 +: A selective industrial route to methanesulfonic acid
Díaz-Urrutia C.; Ott T.
发表日期2019
ISSN0036-8075
起始页码1326
结束页码1329
卷号363期号:6433
英文摘要Direct methane functionalization to value-added products remains a challenge because of the propensity for overoxidation in many reaction environments. Sulfonation has emerged as an attractive approach for achieving the necessary selectivity. Here, we report a practical process for the production of methanesulfonic acid (MSA) from only two reactants: methane and sulfur trioxide. We have achieved >99% selectivity and yield of MSA. The electrophilic initiator based on a sulfonyl peroxide derivative is protonated under superacidic conditions, producing a highly electrophilic oxygen atom capable of activating a C–H bond of methane. Mechanistic studies support the formation of CH3 + as a key intermediate. This method is readily scalable with reactors connected in series for prospective production of up to 20 metric tons per year of MSA. © 2017 The Authors.
英文关键词carbon; hydrogen; mesylic acid; methane; oxygen; peroxide; sulfonyl peroxide derivative; unclassified drug; commercialization; fuel; hydrocarbon; methanol; acidity; Article; chemical bond; chemical modification; electrophilicity; priority journal; protonation; reaction analysis
语种英语
来源期刊Science
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/243536
作者单位R and D Department, Chemicals Division, Grillo-Werke AG, Weseler Strasse 1, Duisburg, 47169, Germany
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Díaz-Urrutia C.,Ott T.. Activation of methane to CH3 +: A selective industrial route to methanesulfonic acid[J],2019,363(6433).
APA Díaz-Urrutia C.,&Ott T..(2019).Activation of methane to CH3 +: A selective industrial route to methanesulfonic acid.Science,363(6433).
MLA Díaz-Urrutia C.,et al."Activation of methane to CH3 +: A selective industrial route to methanesulfonic acid".Science 363.6433(2019).
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