首页> 外文期刊>Journal of Catalysis >Highly active and selective gold catalysts for the aerobic oxidative condensation of benzylamines to imines and one-pot, two-step synthesis of secondary benzylamines
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Highly active and selective gold catalysts for the aerobic oxidative condensation of benzylamines to imines and one-pot, two-step synthesis of secondary benzylamines

机译:高活性和选择性的金催化剂,用于将苄胺有氧氧化缩合为亚胺,以及一锅,两步合成仲苄胺

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摘要

Supported gold nanoparticles catalyze the oxidation of benzylamines to N-benzylidene benzylamines by molecular oxygen in toluene. The process is general, and para-substituted benzylamines as well as heterocyclic methanamines undergo oxidative condensation. 1-Phenylethanamine and diphenylmethanamine form imines with much less selectivity than benzylamines due to the unfavourable steric hindrance introduced by the substituents at the α-carbon. Secondary and tertiary dibenzyl and tribenzylamines form N-benzylidene benzylamines accompanied with aromatic ketones and oximes arising from C-N bond rupture. The efficiency of gold catalyst increases exponentially as the average particle size is reduced, and the TOF increases when the gold crystallite size is decreased. The solid support plays an important role as it has been found that gold supported on active carbon is more efficient than gold supported on anatase. Although palladium nanoparticles are also active in promoting benzylamine oxidation, only the catalyst based on platinum was found to exhibit an activity comparable to that of gold. Cross condensation of benzylamines in the presence of aromatic or aliphatic primary amines forms the mixed N-aryl or N-alkyl benzylimines with high yields. A one-pot, two-step procedure using a single gold catalyst has been devised to produce secondary symmetric and asymmetric amines derived from benzylamines with high atom efficiency.
机译:负载的金纳米颗粒通过甲苯中的分子氧催化苄胺氧化为N-亚苄基苄胺。该过程是常规的,对位取代的苄胺以及杂环甲胺经历氧化缩合。 1-苯基乙胺和二苯甲胺形成亚胺的选择性比苄胺低,这是由于取代基在α-碳上引入不利的位阻。仲和叔二苄基和三苄基胺形成N-亚苄基苄胺,并伴随有由C-N键断裂引起的芳族酮和肟。随着平均粒径的减小,金催化剂的效率呈指数增长,而当金的晶粒尺寸减小时,TOF则增大。固体载体起着重要的作用,因为已经发现,负载在活性炭上的金比负载在锐钛矿上的金更有效。尽管钯纳米颗粒也具有促进苄胺氧化的活性,但是仅发现基于铂的催化剂具有与金相当的活性。在芳族或脂族伯胺的存在下苄胺的交叉缩合以高产率形成混合的N-芳基或N-烷基苄基亚胺。已经设计了使用单一金催化剂的一锅两步方法,以高原子效率生产衍生自苄胺的仲对称和不对称胺。

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