2018
DOI: 10.1021/jacs.8b08385
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Acceptorless Dehydrogenative Coupling Using Ammonia: Direct Synthesis of N-Heteroaromatics from Diols Catalyzed by Ruthenium

Abstract: The synthesis of N-heteroaromatic compounds via an acceptorless dehydrogenative coupling process involving direct use of ammonia as the nitrogen source was explored. We report the synthesis of pyrazine derivatives from 1,2-diols and the synthesis of N-substituted pyrroles by a multicomponent dehydrogenative coupling of 1,4-diols and primary alcohols with ammonia. The acridine-based Ru-pincer complex 1 is an effective catalyst for these transformations, in which the acridine backbone is converted to an anionic … Show more

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Cited by 85 publications
(27 citation statements)
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“…In 2018, mixtures of 2,5-and 2,6-substituted pyrazines were synthesized from 1,2-diols using ammonia as nitrogen source promoted by the acridine-based ruthenium pincer complex Ru-10 (Scheme 22). [41] In a similar manner, pyrroles were formed as well.…”
Section: Pyrazinesmentioning
confidence: 83%
“…In 2018, mixtures of 2,5-and 2,6-substituted pyrazines were synthesized from 1,2-diols using ammonia as nitrogen source promoted by the acridine-based ruthenium pincer complex Ru-10 (Scheme 22). [41] In a similar manner, pyrroles were formed as well.…”
Section: Pyrazinesmentioning
confidence: 83%
“…Our group showed in 2018 that the aromatic complex 1 is an effective catalyst for the dehydrogenative direct synthesis of Nheteroaromatics such as pyrroles and pyrazines from alcohols in two/three-component reaction systems using ammonia gas (Figure 17a). 66 Multicomponent systems to access heterocycles with H 2 liberation were known previously, but they required the use of amino alcohols or amines as substrates. [67][68][69][70] The use of ammonia, on the other hand, has a clear economic advantage.…”
Section: Formation Of N-heteroaromatics From Alcohols and Nhmentioning
confidence: 99%
“…17a). 66 Multicomponent systems to access heterocycles with H 2 liberation were known previously, but they required the use of amino alcohols or amines as substrates. [67][68][69][70] The use of ammonia, on the other hand, has a clear economic advantage.…”
Section: Sustainable Catalysis With Acridinebased Pincer Complexesmentioning
confidence: 99%
“…The N‐alkylation reaction possesses a high atomic utilization and does not produce toxic or wasteful by‐products (only H 2 O is outgrowth) [15–18] . Up to now, the intensive research interests focus on developing homogeneous catalysed systems for the synthesis of organic amines using ammonia or its solution, and transition‐metal homogeneous catalysis systems utilizing Ru, [19–24] Ir, [25–27] have been the most advanced strategy [14] . For example, Fujita et al.…”
Section: Entry Catalysts[b] Yield [%][C]mentioning
confidence: 99%