Ikyon Kim
연세대학교 의약학과 · 화학
이 교수의 연구실은 고도로 효율적이고 원자경제적인 유기합성 전략을 바탕으로 한 복잡한 이황화합물 및 헤테로사이클 화합물의 합성을 주요 연구 분야로 삼고 있습니다. 특히 Pd, Bi(OTf)₃, Pt, In(III) 등 다양한 촉매를 활용한 C-H 활성화, 도메인 반응, 삼성성 반응을 통해 다기능성을 가진 복합 헤테로사이클 구조를 효율적으로 합성합니다. 이는 자연물 합성과 신약 개발에 응용 가능한 고유한 화합물 체계를 창출하는 데 기여하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
A highly practical route to oligostilbenoid natural products is described. A regioselective Bi(OTf)3-catalyzed cyclodehydration provided ready access to 3-arylbenzofuran. Pd-catalyzed direct C-H activation of benzofuran and subsequent cross-coupling with aryl halide was successfully implemented for the introduction of aryl group at the C2 position of benzofuran. Further manipulation of the 2,3-diarylbenzofuran led to the efficient total synthesis of permethylated analogues of viniferifuran, mali
A highly efficient and atom-economical construction of 2-substituted 5-hydroxybenzofurans was accomplished by employing a platinum-catalyzed domino dienone-phenol rearrangement/5-endo-dig cyclization reaction of quinols bearing alkynes.
A direct one-pot approach to polysubstituted indolizinones from tertiary propargylic alcohols using a palladium-catalyzed domino process involving aminopalladation, reductive elimination, and 1,2-shift is described.
The strategic use of a sequential Sonogashira coupling/intramolecular alkyne-carbonyl metathesis process for the synthesis of a pyridine ring from 1-(2-haloaryl)-1H-pyrrole-2-carbaldehydes allowed ready access to diverse novel benzo-fused indolizines, pyrrolo[1,2-a]quinolines, in good to excellent yields. As a hybrid structure of indolizine and quinoline, the resulting scaffold has an acyl substituent at the C5 position, which is difficult to make by any other known approaches.
Post-functionalization at the C3 position of indolizines via In(iii)-catalyzed three-component coupling reaction with amines and aldehydes allowed rapid access to a new class of indolizines with diverse functional groups at the C3 position in good to excellent yields.
A domino Michael-aldol double elimination route to indolizines having two different acyl groups at the C5 and C7 positions is described where chromone is employed as a two-carbon unit for the synthesis of a pyridine moiety for the first time. Various analogues were readily accessed in good yields under metal-free and eco-friendly conditions. Further manipulation of the resulting products allowed entry to novel indolizine-heterocycle adducts, which are difficult to access by other methods.