Jin Kyoon Park
Seoul National University · 化学
研究室紹介
Professor Jin Kyoon Park's research lab specializes in the development of novel transition metal-catalyzed transformations, with a strong focus on copper- and palladium-catalyzed reactions for the efficient synthesis of complex organic molecules. The lab pioneers the design of N-heterocyclic carbene (NHC)-based metal complexes—particularly 6-NHC-Cu(I) systems—that enable high-yielding, enantioselective, and regioselective transformations such as allylic boronation, hydroboration, and cyclization. Their work emphasizes stereoconvergent processes, functional group tolerance, and practical synthetic methodologies for the construction of multifunctional heterocycles and polyol scaffolds.
Research Overview
Research Output Trend
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Selected Papers
15We present a 6-NHC-Cu(I) complex that provides α-substituted allylboronates using allylic aryl ether substrates. The method was discovered by comparison of the chemoselectivities exhibited by complexes 1a, 1b, 2, and 3. We observed that 1a preferentially reacts with electron-rich alkenes over electron-deficient alkenes. Development of an asymmetric method revealed that 1b reacts with both the E and Z isomers to provide the same absolute configuration without showing E-Z isomerization. This stere
A chiral 6-membered annulated N-heterocyclic (6-NHC) copper complex that catalyzes β-borylations with high yield and enantioselectivity was developed. The chiral 6-NHC copper complex is easy to prepare on the gram scale and is very active, showing 10,000 turnovers at 0.01 mol % of catalyst without significant decrease of enantioselectivity and with useful reaction rates.
The catalytic regioselective hydroboration of propargylic alcohols and ethers was investigated using NHC-CuCl. We observe that different NHC-CuCl complexes catalyze hydroborations of propargylic substrates with opposite regioselectivity. A 6-NHC-CuCl complex provides α-selectivity whereas β-selectivity is achieved using a 5-NHC-CuCl complex. The reaction tolerates a wide range of functional groups.
Abstract N‐Alkynylindoles were divergently cyclized for the synthesis of multifused N‐heterocycles. An ortho ‐aryl palladium species was added to the α position of an ynamine to generate ( Z )‐6‐alkylidene/benzylidene‐6 H ‐isoindolo[2,1‐ a ]indoles, while Pt‐catalyzed β‐addition through π‐activation gave 5‐alkyl/arylindolo[2,1‐ a ]isoquinolines. Double cyclizations using PdCl 2 and oxidant afforded bright yellow benzo[7,8]indolizino[2,3,4,5‐ ija ]quinolines, the synthesis of which was also demon
A copper-catalyzed asymmetric allylic boronation (AAB) gives access to syn- and anti-1,2-diols. The method facilitates an iterative strategy for the preparation of polyols, such as the fully differentiated L-ribo-tetrol and protected D-arabino-tetrol. P=protecting group.
A mild and efficient one-pot synthesis of 3-aryl imidazo[1,2-a]pyridines in up to 88% yield was developed. An adduct was formed after the simple mixing of 2-amino-4-methylpyridine, 2-phenylacetaldehyde, and N-iodosuccinimide in CH2Cl2, and the structure of the adduct was characterized by 2D NMR, IR, and high-resolution mass analysis. The adduct was readily cyclized by treatment with a saturated aqueous solution of NaHCO3. The reactions proceeded to completion after several hours at room temperat
A base-controlled Cu-catalyzed tandem cyclization/alkynylation of propargylic amines provides rapid access to functionalized indolizine derivatives under mild reaction conditions. The reaction first proceeded via a 5-endo-dig aminocupration, followed by a coupling between the copper-bound intermediate and alkynyl bromide, to afford the products in good to excellent yields. The successful tandem reaction is attributed to the unique property of the bases, DBU (1,8-diazabicyclo[5.4.0]undec-7-ene) a
Abstract Pd‐catalyzed hydroalkynylations were developed that involve ligand‐enabled regiodivergent addition of an alkyne to an allenamide, giving branched and linear products stereoselectively and facilitated by the neighboring amide group. Regioselectivity was achieved with the use of ( o ‐OMePh) 3 P and BrettPhos, which allowed the functionalization of various alkynes, including steroids, carbohydrates, alkaloids, chiral ligands, and vitamins. Based on the experimental results, it was proposed
Abstract Various imidazolium ionic liquids such as [Bmim]PF 6 , [Bmim]SbF 6 , [Bmim]OTf and [Bmim]BF 4 were screened for recycling an organic catalyst [(5 S )‐5‐benzyl‐2,2,3‐trimethylimidazolidin‐4‐one ( 1 )] for asymmetric Diels–Alder reactions. Good yields and enantioselectivies (up to 85% yield and 93% ee) were obtained from reactions in [Bmim]PF 6 or [Bmim]SbF 6 . However, reactions in [Bmim]OTf or [Bmim]BF 4 gave racemic products in low yields. Isolation of the products by simple extraction
A chiral pyrrolidinylmethanol derivative containing perfluoro-ponytails (5) was prepared from (S)-proline. The use of this perfluoro-substituted amino alcohol in catalytic asymmetric additions of organozinc reagents to aldehydes affords products with high enantioselectivities in both pure hexane and a mixture of hexane and FC-72 (perfluorohexane). Enantiomeric excesses up to 94 and 88 % ee have been achieved in Et(2)Zn and Ph(2)Zn additions, respectively. For the reactions in the biphasic solven
Abstract N‐Alkynylindoles were divergently cyclized for the synthesis of multifused N‐heterocycles. An ortho ‐aryl palladium species was added to the α position of an ynamine to generate ( Z )‐6‐alkylidene/benzylidene‐6 H ‐isoindolo[2,1‐ a ]indoles, while Pt‐catalyzed β‐addition through π‐activation gave 5‐alkyl/arylindolo[2,1‐ a ]isoquinolines. Double cyclizations using PdCl 2 and oxidant afforded bright yellow benzo[7,8]indolizino[2,3,4,5‐ ija ]quinolines, the synthesis of which was also demon
A copper-catalyzed regiocontrolled three-component reaction afforded diversified 4-aminoquinolines using nitriles, diaryliodoniums, and ynamides. The C7-substituted regioisomers were formed regioselectively when meta-substituted phenyliodonium salts were used. [1,3] N-to-C rearrangement of the products to quinolin-4-ylmethanesulfonamides and simultaneous deprotection of benzyl and sulfonamide group were newly developed. Finally, antimalarial CK-2-68 was successfully prepared.
A general method to synthesize halide and halide-free ionic liquids was developed. Direct alkylation of imidazole and pyridine derivatives was performed in the presence of an acid using an orthoester as the alkyl donor yielding ionic liquid products. Residual Cl and water contents of the ionic liquids were determined by ion chromatography and a Karl-Fisher test.
Reported is the utilization of electronically biased conjugated alkynes in the development of highly diastereo- and regioselective dearomative [2 + 2] cycloadditions, alkenylations, and ring expansions of electron-rich indoles. Regioselective protonations of cross- and linear-conjugated alkynes were found to be crucial for accessing various cyclobutene-fused indoline and alkenylated indole derivatives. Furthermore, the facile ring expansion of [2 + 2] keto adducts, which were successfully synthe