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Yong Ho Lee

Korea University · 材料科学

研究室紹介

Professor Yong Ho Lee's research lab specializes in developing innovative transition-metal-catalyzed organic transformations for efficient and atom-economical synthesis of complex organic molecules. The lab focuses on palladium-catalyzed reactions—particularly carbohalogenation and cycloaddition processes—that enable stereoselective construction of C–C and C–halogen bonds with high chemo- and regioselectivity. A significant emphasis is placed on designing novel ligands and catalytic systems to achieve high functional group tolerance and step economy. Additionally, the lab integrates advanced mass spectrometric techniques, such as N-terminal sulfonation and isotope labeling, to support de novo peptide sequencing and quantitative proteomics.

palladium catalysisatom economycarbohalogenationde novo sequencingproteomics

Research Overview

Papers
120
Total Citations
936
Papers (5y)
51
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
51total
2020
2021
2023
2024
2025
Citations per year (5y)
190total
20202021202320242025

Selected Papers

15
1
Article|134 citations·2018
Metathesis-active ligands enable a catalytic functional group metathesis between aroyl chlorides and aryl iodides
Yong Ho Lee, Bill Morandi
SJR Q1Nature Chemistry
Organic ChemistryChemistry
2
Article|71 citations·2019
Palladium‐Catalyzed Intermolecular Aryliodination of Internal Alkynes
Yong Ho Lee, Bill Morandi
SJR Q1Angewandte Chemie International EditionOA

A completely atom economical palladium-catalyzed addition reaction has been developed to stereoselectively access functionalized tetrasubstituted alkenyl iodides. The palladium catalyst, which bears an electron-poor bidentate ligand rarely employed in catalysis, is essential to promote the high yielding and chemoselective intermolecular reaction between equimolar amounts of an alkyne and an aryl iodide. This new carbohalogenation reaction is an attractive alternative to traditional synthetic met

Organic ChemistryChemistry
3
Article|65 citations·2000
A correction method for heated length effect in critical heat flux prediction
Yong Ho Lee, Won-Pil Baek, Soon Heung Chang
SJR Q1Nuclear Engineering and Design
Mechanical EngineeringEngineering
4
Article|55 citations·2019
Transition metal-mediated metathesis between P–C and M–C bonds: Beyond a side reaction
Yong Ho Lee, Bill Morandi
SJR Q1Coordination Chemistry ReviewsOA
Organic ChemistryChemistry
5
Article|45 citations·2004
Highly informative proteome analysis by combining improved N ‐terminal sulfonation for de novo peptide sequencing and online capillary reverse‐phase liquid chromatography/tandem mass spectrometry
Yong Ho Lee, Min‐Sik Kim, Woo‐Suk Choie, Hye‐Ki Min, Sang‐Won Lee
SJR Q2PROTEOMICS

Recently, various chemical modifications of peptides have been incorporated into mass spectrometric analyses of proteome samples, predominantly in conjunction with matrix-assisted laser desorption/ionization mass spectrometry (MALDI MS), to facilitate de novo sequencing of peptides. In this work, we investigate systematically the utility of N-terminal sulfonation of tryptic peptides by 4-sulfophenyl isothiocyanate (SPITC) for proteome analysis by capillary reverse-phase liquid chromatography/tan

SpectroscopyChemistry
6
Article|43 citations·2004
An experimental investigation on the critical heat flux enhancement by mechanical vibration in vertical round tube
Yong Ho Lee, Dae Hun Kim, Soon Heung Chang
SJR Q1Nuclear Engineering and Design
Mechanical EngineeringEngineering
7
Article|43 citations·2004
Isotope‐coded N‐terminal sulfonation of peptides allows quantitative proteomic analysis with increased de novo peptide sequencing capability
Yong Ho Lee, Hoon Han, Seok‐Bok Chang, Sang‐Won Lee
SJR Q3Rapid Communications in Mass Spectrometry

Recently various methods for the N-terminal sulfonation of peptides have been developed for the mass spectrometric analyses of proteomic samples to facilitate de novo sequencing of the peptides produced. This paper describes the isotope-coded N-terminal sulfonation (ICenS) of peptides; this procedure allows both de novo peptide sequencing and quantitative proteomics to be studied simultaneously. As N-terminal sulfonation reagents, 13C-labeled 4-sulfophenyl[13C6]isothiocyanate (13C-SPITC) and unl

SpectroscopyChemistry
8
Article|40 citations·2021
Palladium-catalysed carboformylation of alkynes using acid chlorides as a dual carbon monoxide and carbon source
Yong Ho Lee, Elliott H. Denton, Bill Morandi
SJR Q1Nature ChemistryOA
Organic ChemistryChemistry
9
Article|30 citations·2003
The Effect of Vibration on Critical Heat Flux in a Vertical Round Tube
Yong Ho Lee, Soon Heung Chang
SJR Q2Journal of Nuclear Science and TechnologyOA

Abstract This paper deals with the results of experimental investigations on the effects of tube vibration on critical heat flux (CHF) in order to gain an understanding of the relationship between CHF and flow-induced vibration (FIV). The experiment was carried out in the following range of parameters: diameter (D)=0.008 m; heated length (L)=0.2, 0.4 m; pressure (P)=101 kPa; mass flux (G)=403–2,551 kg/m2.s; quality (x)=-0.045–0.289; amplitude (a)=0.0001–0.001 m; frequency (f)=0–70Hz. The CHF gen

Mechanical EngineeringEngineering
10
Article|22 citations·2019
Palladium‐katalysierte intermolekulare Aryliodierung von internen Alkinen
Yong Ho Lee, Bill Morandi
Angewandte Chemie

Abstract Eine vollständig atomökonomische, Palladium‐katalysierte Additionsreaktion wurde entwickelt, um einen stereoselektiven Zugang zu funktionalisierten, vierfach substituierten Alkenyliodiden zu erhalten. Der Palladiumkatalysator weist einen elektronenarmen, zweizähnigen Liganden auf, der zwar selten in der Katalyse verwendet wird, aber essentiell ist, um diese chemoselektive, intermolekulare Reaktion eines Alkins mit einem Aryliodid in äquimolaren Mengen mit hoher Ausbeute ablaufen zu lass

Organic ChemistryChemistry
11
Article|20 citations·2020
Modular Cyclopentenone Synthesis through the Catalytic Molecular Shuffling of Unsaturated Acid Chlorides and Alkynes
Yong Ho Lee, Elliott H. Denton, Bill Morandi
SJR Q1Journal of the American Chemical SocietyOA

We describe a general strategy for the intermolecular synthesis of polysubstituted cyclopentenones using palladium catalysis. Overall, this reaction is achieved via a molecular shuffling process involving an alkyne, an α,β-unsaturated acid chloride, which serves as both the alkene and carbon monoxide source, and a hydrosilane to create three new C-C bonds. This new carbon monoxide-free pathway delivers the products with excellent yields. Furthermore, the regioselectivity is complementary to conv

Organic ChemistryChemistry
12
Article|18 citations·2017
Ether Synthesis through Reductive Cross-Coupling of Ketones with Alcohols Using Me2SiHCl as both Reductant and Lewis Acid
Bill Morandi, Yong Ho Lee
SJR Q3Synlett

We report that a Lewis acidic silane, Me2SiHCl, can mediate the direct cross-coupling of a wide range of carbonyl compounds with alcohols to form dialkyl ethers. The reaction is operationally simple, tolerates a range of polar functional groups, can be utilized to make sterically hindered ethers, and is extendable to sulfur and nitrogen nucleo­philes.

Organic ChemistryChemistry
13
Article|9 citations·2005
Enrichment of N-terminal sulfonated peptides by a water-soluble fullerene derivative and its applications to highly efficient proteomics
Yong Ho Lee, Joong-Won Shin, Seungwan Ryu, Sang‐Won Lee, Chang Hoon Lee, Kwangyeol Lee
SJR Q1Analytica Chimica Acta
SpectroscopyChemistry
14
Article|8 citations·2024
C–C Bond Cleavage-Induced C- to N-Acyl Transfer for Synthesis of Amides
Su Eun Lee, Youngsoo Kim, Yong Ho Lee, Hee Nam Lim
SJR Q1Organic Letters

A new approach for the preparation of amides was developed using C-C bond cleavage that initiates C- to N-acyl transfer, employing activated ketones as acylation reagents and amine nucleophiles. The reaction was operational under the coupling reagent system that is commonly utilized for peptide bond formations. The method enables practical preparation of amides using linear and cyclic ketone substrates under mild conditions.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|7 citations·2018
In situ acyl triflates ace it
Yong Ho Lee, Bill Morandi
SJR Q1Nature Chemistry
Organic ChemistryChemistry

Research Areas

Materials ChemistryOrganic ChemistryMechanical EngineeringSpectroscopyElectronic, Optical and Magnetic MaterialsCondensed Matter Physics

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