Kyoto University · 재료과학
Koji Miki 교수의 연구실은 주로 전이금속 촉매를 이용한 탄소-탄소 결합 형성 반응, 특히 알킨 유도 카보니르 생성 및 이의 유용한 전구체로 활용하는 반응을 중심으로 연구를 전개하고 있습니다. 특히, 알켄과 알킨 유도 카보니르 복합체를 이용한 사이클로프로판화 반응과 이에 기반한 다양한 고리 구조 화합물의 합성이 핵심이며, 이는 유기합성에서의 원자 효율성과 반응 선택성을 높이는 데 기여합니다. 또한, 전이금속-카보니르 복합체의 생성 메커니즘과 그 응용에 대한 깊이 있는 기초 연구도 진행 중입니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Intermolecular cyclopropanation reactions of various alkenes with propargylic carboxylates 1 are catalyzed by [RuCl2(CO)3]2 to give vinylcyclopropanes 2 in good yields. The key intermediate of the reaction is a vinylcarbene complex generated in situ by nucleophilic attack of a carbonyl oxygen of the carboxylates to an internal carbon of the alkyne activated by the ruthenium complex. A variety of transition-metal compounds other than the Ru compound can also be employed in this system. Similar cy
The reaction of conjugated ene-yne-ketones 3 with a variety of alkenes in the presence of a catalytic amount of Cr(CO)(5)(THF) at room temperature gives (2-furyl)cyclopropanes in good yields. These cyclopropanation reactions proceed via (2-furyl)carbene-chromium intermediates 4 formed in situ from ene-yne-ketones 3. Late transition metals, such as [RuCl(2)(CO)(3)](2), [RhCl(cod)](2), PdCl(2), and PtCl(2), also catalyze effectively the cyclopropanation of styrene with 3.
Abstract The transition metal-induced in situ generation of carbene complexes from alkynes having a carbonyl or imino group as a nucleophilic functionality has been investigated. These reactive carbenoid species are generated with high atom efficiency through a 6-endo-dig cyclization mode based on the electrocyclization of vinylidene complexes or a 5-exo-dig cyclization mode in π-alkyne complexes and have been found to serve as versatile intermediates in catalytic carbene transfer reactions.
The reaction of alkenes with conjugated ene-yne-ketones, such as 1-benzoyl-2-ethynylcycloalkenes, with a catalytic amount of Cr(CO)(5)(THF) gave 5-phenyl-2-furylcyclopropane derivatives in good yields. The key intermediate of this cyclopropanation is a (2-furyl)carbene complex generated by a nucleophilic attack of carbonyl oxygen to an internal alkyne carbon in pi-alkyne complex or sigma-vinyl cationic complex. A wide range of late transition metal compounds, such as [RuCl(2)(CO)(3)](2), [RhCl(c
Nanoparticles at work: High-contrast tumor imaging of mice was performed by using copolymers with hydrophobic and hydrophilic polymer brushes that form cross-linked assemblies and show a highly stable core surface in aqueous media (see picture). Cyclic RGD peptides and glucosamine moieties were localized on the surface of the assemblies and acted as targeting agents (TA) that enhanced the accumulation of the assemblies in tumor tissues.
Polymers from carbenoid intermediates: A new approach to the synthesis of cyclopropane- and alkene-containing polymers that contain both a carbenoid donor and acceptor is described. The polymers can be effectively obtained from enyne ketones via carbenoid intermediates in the presence of a [{Rh(OAc)2}2] catalyst (see scheme).
Electron-rich cycloparaphenyleneacetylenes as well as their twin “glasses-like” conjugates form stable complexes with fullerenes.
[reaction: see text] The reaction of heteroaromatic compounds with propargylic carboxylates in the presence of a catalytic amount of [RuCl(2)(CO)(3)](2) or PtCl(2) gives trienes in good yields. The key intermediate is an electrophilic (1-acetoxylvinyl)carbene complex generated from the activated propargylic acetates with transition metals.
Angle-strained alkyne-containing π-conjugated macrocycles are attractive compounds both in functional materials chemistry and biochemistry. Their interesting reactivity as well as photophysical and supramolecular properties have been revealed in the past three decades. This review highlights the recent advances in angle-strained alkyne-containing π-conjugated macrocycles, especially their synthetic methods, the bond angles of alkynes (∠<sub>sp</sub> at C≡C-C), and their functions. The theoretica
Photoacoustic (PA) imaging is an emerging molecular imaging modality that complements fluorescence imaging and enables high resolution within deep tissue. Fluorescence/PA multimodality imaging would be a powerful technique to extract more comprehensive information from targets than traditional single-modality imaging. In this paper, we developed a new pH-activatable sensor, <b>CypHRGD</b>, which is applicable to both fluorescence and PA detection. <b>CypHRGD</b> was derived from our previous nea
Carbon-based double helicates consisting of two anthracene-containing oligo(p-phenyleneethynylene) units and two flexible chiral 1,1'-binaphthyl units or two rigid chiral 9,9'-spirobifluorene units were developed. The curved oligo(p-phenyleneethynylene) fragments in the double helicates were successfully constructed by tin-mediated reductive aromatization. Helical oligo(p-phenyleneethynylene) double strands fixed by two rigid spirobifluorene units showed little structural change under photoirrad
Amphiphilic hyaluronic acid (HA) derivatives bearing hydrophobic indocyanine green dye derivatives and hydrophilic poly(ethylene glycol) were synthesized through the use of condensation and copper-catalyzed click cyclization reactions. The amphiphilic HA derivatives dissolved in water and formed self-assemblies in which the near-infrared dyes were tightly packed and arranged to form dimers or H-aggregates. By irradiating an aqueous solution of HA derivatives with near-infrared light, photoacoust