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Suk-Chang Hong

Seoul National University · 化学

研究室紹介

Professor Suk-Chang Hong's research lab specializes in the development of sustainable and enantioselective synthetic methodologies, with a strong focus on transition-metal-catalyzed C–H functionalization, phase-transfer catalysis, and iron-catalyzed redox processes. The lab pioneers atom-economical and eco-friendly strategies for the synthesis of complex nitrogen-containing heterocycles—such as benzoxazoles, benzimidazoles, quinazolinones, and pyrroloquinoxalines—using earth-abundant iron catalysts and redox-neutral or acceptorless transformations. Key innovations include enantioselective alkylation of malonates and direct C–H amination, enabling efficient access to chiral building blocks and bioactive natural products with high enantioselectivity and functional group tolerance.

asymmetric synthesisiron catalysisC–H functionalizationheterocycle synthesisphase-transfer catalysis

Research Overview

Papers
102
Total Citations
1,431
Papers (5y)
26
Primary Field
化学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
26total
2022
2023
2024
2025
2026
Citations per year (5y)
214total
20222023202420252026

Selected Papers

15
1
Article|63 citations·2011
Highly Enantioselective Synthesis of α,α-Dialkylmalonates by Phase-Transfer Catalytic Desymmetrization
Suckchang Hong, Jihye Lee, Minsik Kim, Yohan Park, Cheonhyoung Park, Mi‐Hyun Kim, Sang‐sup Jew, Hyeung‐geun Park
SJR Q1Journal of the American Chemical Society

A novel enantioselective synthetic method for the construction of a quaternary carbon center from malonates via phase-transfer catalytic (PTC) alkylation has been developed. The asymmetric α-alkylation of diphenylmethyl tert-butyl α-alkylmalonates with alkylating agents under phase-transfer catalysis conditions (aq 50% KOH, toluene, 0 °C) in the presence of (S,S)-3,4,5-trifluorophenyl-NAS bromide (8) as PTC catalyst afforded the corresponding α,α-dialkylmalonates in high chemical (up to 99%) and

Organic ChemistryChemistry
2
Article|59 citations·2020
Synthesis of 2-aryl quinazolinones via iron-catalyzed cross-dehydrogenative coupling (CDC) between N–H and C–H bonds
Yoonkyung Jang, Seok Beom Lee, Junhwa Hong, Simin Chun, Jeeyeon Lee, Suckchang Hong
SJR Q2Organic & Biomolecular Chemistry

Herein, we describe the direct synthesis of quinazolinones via cross-dehydrogenative coupling between methyl arenes and anthranilamides. The C-H functionalization of the benzylic sp3 carbon is achieved by di-t-butyl peroxide under air, and the subsequent amination-aerobic oxidation process completes the annulation process. Iron catalyzed the whole reaction process and various kinds of functional groups were tolerated under the reaction conditions, providing 31 examples of 2-aryl quinazolinones u

Organic ChemistryChemistry
3
Article|58 citations·2020
Iron(0)-Catalyzed Transfer Hydrogenative Condensation of Nitroarenes with Alcohols: A Straightforward Approach to Benzoxazoles, Benzothiazoles, and Benzimidazoles
Ramachandra Reddy Putta, Simin Chun, Seung Hyun Choi, Seok Beom Lee, Dong‐Chan Oh, Suckchang Hong
SJR Q2The Journal of Organic Chemistry

The iron-catalyzed hydrogen transfer strategy has been applied to the redox condensation of <i>o</i>-hydroxynitrobenzene with alcohol, leading to the formation of benzoxazole derivatives. A wide range of 2-substituted benzoxazoles were synthesized in good to excellent yields without the addition of an external redox agent. A series of control experiments provided a plausible mechanism. Furthermore, the reaction system was successfully extended to the synthesis of benzothiazoles and benzimidazole

Inorganic ChemistryChemistry
4
Article|43 citations·2020
Direct Synthesis of Pyrrolo[1,2-α]quinoxalines via Iron-Catalyzed Transfer Hydrogenation between 1-(2-Nitrophenyl)pyrroles and Alcohols
Simin Chun, Jiwon Ahn, Ramachandra Reddy Putta, Seok Beom Lee, Dong‐Chan Oh, Suckchang Hong
SJR Q2The Journal of Organic Chemistry

Herein, we describe novel iron-catalyzed transfer hydrogenation between alcohols and 1-(2-nitrophenyl)pyrroles for the synthesis of pyrrolo[1,2-α]quinoxalines. The tricarbonyl (η<sup>4</sup>-cyclopentadienone) iron complex catalyzed the oxidation of alcohols and the reduction of nitroarenes, and the corresponding aldehydes and aniline were generated <i>in situ</i>. The resulting Pictet-Spengler-type annulation/oxidation completed the quinoxaline structure formation. The protocol tolerated variou

Inorganic ChemistryChemistry
5
Article|42 citations·2013
Efficient Enantioselective Total Synthesis of (−)‐Horsfiline
Suckchang Hong, Myunggi Jung, Yohan Park, Min Woo Ha, Cheonhyoung Park, Myungmo Lee, Hyeung‐geun Park
SJR Q1Chemistry - A European Journal

A new efficient and concise enantioselective synthetic method for (-)-horsfiline is reported. (-)-Horsfiline could be obtained from diphenylmethyl tert-butyl malonate in 9 steps (32%,>99% ee) by using the enantioselective phase-transfer catalytic allylation (91% ee) as the key step. This approach can be applied as a practical route for the large-scale synthesis of spirooxindole natural products, which enables a systematic investigation of their biological activity to be performed.

Organic ChemistryChemistry
6
Article|40 citations·2023
Design, Synthesis, and Biological Activity of Marinacarboline Analogues as STAT3 Pathway Inhibitors for Docetaxel-Resistant Triple-Negative Breast Cancer
Woong Sub Byun, Hyewon Lim, Junhwa Hong, Eun Seo Bae, Seok Beom Lee, Seok Beom Lee, Younggwan Kim, Jeeyeon Lee, Sang Kook Lee, Sang Kook Lee, Suckchang Hong
SJR Q1Journal of Medicinal ChemistryOA

Metastatic triple-negative breast cancer (mTNBC) is a fatal type of breast cancer (BC), and signal transducer and activator of transcription 3 (STAT3) has emerged as an effective target for mTNBC. In the present study, compound MC0704 was found to be a novel synthetic STAT3 pathway inhibitor, and its potential antitumor activity was demonstrated using in vitro and in vivo models in docetaxel-resistant TNBC cells. Based on marinacarboline (MC), a series β-carboline derivatives were synthesized an

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|38 citations·2020
Iron-Catalyzed Acceptorless Dehydrogenative Coupling of Alcohols With Aromatic Diamines: Selective Synthesis of 1,2-Disubstituted Benzimidazoles
Ramachandra Reddy Putta, Simin Chun, Seok Beom Lee, Dong‐Chan Oh, Suckchang Hong
SJR Q1Frontiers in ChemistryOA

Benzimidazoles are important <i>N</i>-heteroaromatic compounds with various biological activities and pharmacological applications. Herein, we present the first iron-catalyzed selective synthesis of 1,2-disubstituted benzimidazoles <i>via</i> acceptorless dehydrogenative coupling of primary alcohols with aromatic diamines. The tricarbonyl (η<sup>4</sup>-cyclopentadienone) iron complex catalyzed dehydrogenative cyclization, releasing water and hydrogen gas as by-products. The earth abundance and

Inorganic ChemistryChemistry
8
Article|35 citations·2015
Efficient synthesis and biological activity of Psammaplin A and its analogues as antitumor agents
Suckchang Hong, Yoonho Shin, Myunggi Jung, Min Woo Ha, Yohan Park, Yeon‐Ju Lee, Jongheon Shin, Ki Oh, Sang Kook Lee, Hyeung‐geun Park
SJR Q1European Journal of Medicinal Chemistry
Organic ChemistryChemistry
9
Article|34 citations·2021
Synthesis of 4-Aryl Pyrrolo[1,2-α]quinoxalines via Iron-Catalyzed Oxidative Coupling from an Unactivated Methyl Arene
Jiwon Ahn, Seok Beom Lee, Injae Song, Simin Chun, Dong‐Chan Oh, Suckchang Hong
SJR Q2The Journal of Organic Chemistry

Herein, we describe the direct synthesis of pyrrolo[1,2-α]quinoxaline <i>via</i> oxidative coupling between methyl arene and 1-(2-aminophenyl) pyrroles. Oxidation of the benzylic carbon of the methyl arene was achieved by di-<i>t</i>-butyl peroxide in the presence of an iron catalyst, followed by conversion to an activated aldehyde <i>in situ</i>. Oxygen played a crucial role in the oxidation process to accelerate benzaldehyde formation. Subsequent Pictet-Spengler-type annulation completed the q

Organic ChemistryChemistry
10
Article|30 citations·2022
Chemoselective α-Alkylation and α-Olefination of Arylacetonitriles with Alcohols via Iron-Catalyzed Borrowing Hydrogen and Dehydrogenative Coupling
Ramachandra Reddy Putta, Simin Chun, Seok Beom Lee, Junhwa Hong, Seung Hyun Choi, Dong‐Chan Oh, Suckchang Hong
SJR Q2The Journal of Organic Chemistry

α-Alkyl and α-olefin nitriles are very important for organic synthesis and medicinal chemistry. However, different types of catalysts are employed to achieve either α-alkylation of nitriles by borrowing hydrogen or α-olefination by dehydrogenative coupling methods. Designing and developing high-performance earth-abundant catalysts that can procure different products from the same starting materials remain a great challenge. Herein, we report an iron(0) catalyst system that achieves chemoselectiv

Inorganic ChemistryChemistry
11
Article|21 citations·2023
Iron-Catalyzed Oxidative Cyclization of 2-Amino Styrenes with Alcohols and Methyl Arenes for the Synthesis of Polysubstituted Quinolines
Seok Beom Lee, Simin Chun, Seung Hyun Choi, Junhwa Hong, Dong‐Chan Oh, Suckchang Hong
SJR Q2The Journal of Organic Chemistry

Herein, we present the iron-catalyzed oxidative cyclization of alcohol/methyl arene with 2-amino styrene to synthesize polysubstituted quinoline. Low-oxidation level substrates such as alcohols and methyl arenes are converted to aldehydes in the presence of an iron catalyst and di- t -butyl peroxide. Then, the quinoline scaffold is synthesized through imine condensation/radical cyclization/oxidative aromatization. Our protocol showed a broad substrate scope, and various functionalization and flu

Organic ChemistryChemistry
12
Article|18 citations·2023
Iron‐Catalyzed Transfer Hydrogenation: Divergent Synthesis of Quinolines and Quinolones from ortho‐Nitrobenzyl Alcohols
Simin Chun, Ramachandra Reddy Putta, Junhwa Hong, Seung Hyun Choi, Dong‐Chan Oh, Suckchang Hong
SJR Q1Advanced Synthesis & Catalysis

Abstract Herein, we report the divergent synthesis of quinolines and quinolones via a transfer hydrogenative condensation of ortho ‐nitrobenzyl alcohols in one step. The reaction proceeded using the cyclopentadienone iron complex without any additional redox reagents. After transfer hydrogenation between ortho ‐nitrobenzyl alcohols and secondary alcohols, the subsequent Friedländer annulation affords polysubstituted quinoline products in 22–90% (39 examples). The developed method was also applie

Inorganic ChemistryChemistry
13
Article|18 citations·2021
Iron-catalyzed one-pot synthesis of quinoxalines: transfer hydrogenative condensation of 2-nitroanilines with vicinal diols
Ramachandra Reddy Putta, Simin Chun, Seok Beom Lee, Junhwa Hong, Dong‐Chan Oh, Suckchang Hong
SJR Q1RSC AdvancesOA

. Trimethylamine N-oxide was used to activate the iron complex. Various unsymmetrical and symmetrical vicinal diols were applied for transfer hydrogenation, resulting in quinoxaline derivatives in 49-98% yields. A plausible mechanism was proposed based on a series of control experiments. The major advantages of this protocol are that no external redox reagents or additional base is needed and that water is liberated as the sole byproduct.

Organic ChemistryChemistry
14
Article|17 citations·2020
One-Pot Synthesis of 4-Quinolone via Iron-Catalyzed Oxidative Coupling of Alcohol and Methyl Arene
Seok Beom Lee, Yoonkyung Jang, Jiwon Ahn, Simin Chun, Dong‐Chan Oh, Suckchang Hong
SJR Q1Organic Letters

Herein, we describe the iron(III)-catalyzed oxidative coupling of alcohol/methyl arene with 2-amino phenyl ketone to synthesize 4-quinolone. Alcohols and methyl arenes are oxidized to the aldehyde in the presence of an iron catalyst and di-<i>tert</i>-butyl peroxide, followed by a tandem process, condensation with amine/Mannich-type cyclization/oxidation, to complete the 4-quinolone ring. This method tolerates various kinds of functional groups and provides a direct approach to the synthesis of

Organic ChemistryChemistry
15
Article|14 citations·2020
Site‐Selective C–H Amidation of 2‐Aryl Quinazolinones Using Nitrene Surrogates
Saegun Kim, Daeun Jeoung, Kunyoung Kim, Seok Beom Lee, Suk Hun Lee, Min Seo Park, Prithwish Ghosh, Neeraj Kumar Mishra, Suckchang Hong, In Su Kim
SJR Q2European Journal of Organic Chemistry

The site‐selective modifications of quinazolinones constitute a pivotal topic in drug discovery and material science. Herein, we describe the rhodium(III)‐catalyzed C–H amidation of 2‐aryl quinazolin‐4(3 H )‐ones with a range of nitrene surrogates including dioxazolones, organic azides, and N ‐methoxyamides. Complete site‐selectivity and functional group tolerance are observed. Notably, the large‐scale reaction and late‐stage functionalization highlight the synthetic potential of the developed p

Organic ChemistryChemistry

Research Areas

Organic ChemistryPharmacologyMolecular BiologyMaterials ChemistryInorganic ChemistryBiotechnology

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