The University of Osaka · 화학
미츠히로 아리사와 교수의 연구실은 촉매 화학과 유기합성화학을 중심으로, 루테늄 기반 촉매를 이용한 고도로 선택적인 이소머리제이션 및 사이클로이소머리제이션 반응을 개발하고 있습니다. 특히, 알켄의 이소머리제이션을 통한 인돌 유도체 합성과, 고리 형성 반응을 활용한 생활물질 유도체 합성에 초점을 맞추고 있으며, 최근에는 금 나노입자를 활용한 C(sp³)–H 결합 기능화 기술까지 확장하고 있습니다. 이는 다이버시티 오리엔티드 합성과 약물 합성에 응용 가능한 고효율 촉매 전략을 제시합니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
A pure ruthenium hydride complex with N-heterocyclic carbene (NHC) ligand was efficiently generated from the reaction of a second-generation Grubbs ruthenium catalyst with vinyloxytrimethylsilane and unambiguously characterized. This ruthenium hydride complex showed high catalytic activity for the selective isomerization of terminal olefin and for the cycloisomerization of 1,6-dienes. These reactions of N-allyl-o-vinylaniline lead to novel synthetic methods for heterocycles such as indoles and 3
A ruthenium complex, generated from the Grubbs carbene catalyst with vinyloxytrimethylsilane, catalyzed the isomerization of terminal alkenes RCH2CHCH2 to internal alkenes RCHCHCH3. Application of this olefin isomerization to 2-(N-allylamino)styrene gave the corresponding enamines, which were converted into indoles by a standard ring-closing metathesis, see scheme (Ts=tosyl).
Ein Rutheniumkomplex, der aus dem Grubbs-Carbenkatalysator und Vinyloxytrimethylsilan hergestellt wurde, katalysiert die Isomerisierung von terminalen Alkenen RCH2CHCH2 zu internen Alkenen RCHCHCH3. Die Anwendung dieser Olefinisomerisierung auf ein geschütztes 2-(N-Allylamino)styrol führte zu den entsprechenden Enaminen, die durch eine Standard-Ringschlussmetathese in Indole überführt wurden (siehe Schema, Ts=Tosyl). Supporting information for this article is available on the WWW under http://
A novel hypervalent iodine(III)-induced direct intramolecular cyclization of alpha-(aryl)alkyl-beta-dicarbonyl compounds has been described. Both meta- and para-substituted phenol ether derivatives containing acyclic or cyclic 1,3-dicarbonyl moieties at the side chain undergo this reaction in a facile manner. The reactions afford benzannulated and spirobenzannulated compounds that are of biological importance. The reaction is found to be general, mild, and high yielding. The mechanism of the rea
M. Arisawa, S. Utsumi, M. Nakajima, N. G. Ramesh, H. Tohma and Y. Kita, Chem. Commun., 1999, 469 DOI: 10.1039/A809680E
Abstract We have developed a sulfur‐modified, gold‐supported palladium material (SAuPd) with palladium, Pd, nanoparticles on its surface; it is a recyclable, low‐leaching Pd catalyst. Here we report, using SAuPd, the first example of Pd nanoparticle‐catalyzed, unactivated C( sp 3 )H bond functionalization of amides, using 8‐aminoquinoline as a directing group, to yield ethynylated products. The low leaching properties of SAuPd enabled it to be recycled and reused 10 times for C( sp 3 )H bond f
An efficient synthetic method for the preparation of optically active pyrroloazocine, pyrroloazepine, quinolizidine, indolizidine using ring closing olefin metathesis (RCM) is described.
Non-metathesis reactions of ruthenium carbene catalysts, such as olefin isomerization, hydrogenation, radical reaction, activation of silane, cyclopropanation, epimerization cocyclopropane, [3 + 2] cycloaddition, and cycloisomerization, are summarized. The utility of these reactions was demonstrated by the synthesis of indole using olefin isomerization and subsequent ring-closing metathesis, the synthesis of indoline using cycloisomerization, and the synthesis of the putative structure of fistul
Chiral (-)-coniceine and (S)-pyrrolam A were synthesized from dienes prepared from L-proline by ring closure metathesis.
Azacycloundecenes, which are key intermediates in the synthesis of derivatives of the marine alkaloid manzamine C, are conveniently prepared using ring-closing olefin metathesis (RCM).
An efficient synthesis of alpha,beta-unsaturated ketones by the reaction of acid chlorides with trialkylaluminum (1/3 mole equiv) in the presence of AlCl(3) (1 mol equiv) is described. Dialkylzincs were also useful and are easier to prepare than trialkylaluminum. Reaction of RCOCl with R'AlCl(2) or R'(2)AlCl gave R'COR, without AlCl(3), in high yield.