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Jongcheol Seo

Pohang University of Science and Technology · 化学

研究室紹介

Professor Jongcheol Seo's research lab specializes in the structural characterization of biomolecules in the gas phase, with a focus on understanding how protein and molecular structures are preserved during the transition from solution to the gas phase. The lab employs advanced techniques such as ion mobility spectrometry, infrared spectroscopy, and computational modeling to investigate the conformational dynamics, protonation sites, and non-covalent interactions in proteins, small organic molecules, and functional materials. Key research directions include the design of stable, soluble redox-active molecules for sustainable energy storage and the development of topologically complex protein architectures through controlled folding and ligation strategies. The lab also explores the role of π–π interactions and amphiphilic self-assembly in shaping molecular nanostructures.

gas-phase structureion mobilityredox flow batteriesprotein topologysupramolecular assembly

Research Overview

Papers
87
Total Citations
1,734
Papers (5y)
37
Primary Field
化学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
37total
2022
2023
2024
2025
2026
Citations per year (5y)
234total
20222023202420252026

Selected Papers

15
1
Article|225 citations·2016
An infrared spectroscopy approach to follow β-sheet formation in peptide amyloid assemblies
Jongcheol Seo, Waldemar Hoffmann, Stephan Warnke, Xing Huang, Sandy Gewinner, Wieland Schöllkopf, Michael T. Bowers, Gert von Helden, Kevin Pagel
SJR Q1Nature Chemistry
PhysiologyMedicine
2
Article|135 citations·2016
Retention of Native Protein Structures in the Absence of Solvent: A Coupled Ion Mobility and Spectroscopic Study
Jongcheol Seo, Waldemar Hoffmann, Stephan Warnke, Michael T. Bowers, Kevin Pagel, Gert von Helden
SJR Q1Angewandte Chemie International EditionOA

Can the structures of small to medium-sized proteins be conserved after transfer from the solution phase to the gas phase? A large number of studies have been devoted to this topic, however the answer has not been unambiguously determined to date. A clarification of this problem is important since it would allow very sensitive native mass spectrometry techniques to be used to address problems relevant to structural biology. A combination of ion-mobility mass spectrometry with infrared spectrosco

SpectroscopyChemistry
3
Article|80 citations·2018
The Structure of the Protonated Serine Octamer
Valeriu Scutelnic, Marta A. S. Perez, Mateusz Marianski, Stephan Warnke, Aurélien Gregor, Ursula Röthlisberger, Michael T. Bowers, Carsten Baldauf, Gert von Helden, Thomas R. Rizzo, Jongcheol Seo
SJR Q1Journal of the American Chemical SocietyOA

more stable than the previous most stable published structure and explains both the homochiral preference and the experimentally observed facile replacement of two serine units.

SpectroscopyChemistry
4
Article|78 citations·2016
The impact of environment and resonance effects on the site of protonation of aminobenzoic acid derivatives
Jongcheol Seo, Stephan Warnke, Sandy Gewinner, Wieland Schöllkopf, Michael T. Bowers, Kevin Pagel, Gert von Helden
SJR Q2Physical Chemistry Chemical PhysicsOA

The charge distribution in a molecule is crucial in determining its physical and chemical properties. Aminobenzoic acid derivatives are biologically active small molecules, which have two possible protonation sites: the amine (N-protonation) and the carbonyl oxygen (O-protonation). Here, we employ gas-phase infrared spectroscopy in combination with ion mobility-mass spectrometry and density functional theory calculations to unambiguously determine the preferred protonation sites of p-, m-, and o

SpectroscopyChemistry
5
Article|67 citations·2017
Infrared spectrum and structure of the homochiral serine octamer–dichloride complex
Jongcheol Seo, Stephan Warnke, Kevin Pagel, Michael T. Bowers, Gert von Helden
SJR Q1Nature Chemistry
SpectroscopyChemistry
6
Article|54 citations·2023
Controlling π–π Interactions of Highly Soluble Naphthalene Diimide Derivatives for Neutral pH Aqueous Redox Flow Batteries
Vikram Singh, Seongyeon Kwon, Yunseop Choi, Seongmo Ahn, Gyumin Kang, Yelim Yi, Mi Hee Lim, Jongcheol Seo, Mu‐Hyun Baik, Hye Ryung Byon
SJR Q1Advanced Materials

Abstract Organic redox‐active molecules are a promising platform for designing sustainable, cheap, and safe charge carriers for redox flow batteries. However, radical formation during the electron‐transfer process causes severe side reactions and reduces cyclability. This problem is mitigated by using naphthalene diimide (NDI) molecules and regulating their π–π interactions. The long‐range π‐stacking of NDI molecules, which leads to precipitation, is disrupted by tethering four ammonium function

Electrical and Electronic EngineeringEngineering
7
Article|38 citations·2016
Stacking Geometries of Early Protoporphyrin IX Aggregates Revealed by Gas-Phase Infrared Spectroscopy
Jongcheol Seo, Jinhyeong Jang, Stephan Warnke, Sandy Gewinner, Wieland Schöllkopf, Gert von Helden
SJR Q1Journal of the American Chemical SocietyOA

Amphiphilic porphyrins are of great interest in the field of supramolecular chemistry because they can be fabricated into highly ordered architectures that are stabilized by π-π stacking of porphine rings as well as by non-covalent interactions between their hydrophilic substituents. Protoporphyrin IX (PPIX) has two flexible propionic acid tails and is one of the most common amphiphilic porphyrins. However, unlike other PPIX analogues, PPIX does not form stable extended nanostructures, and the r

Materials ChemistryMaterials Science
8
Article|36 citations·2020
Lasso Proteins: Modular Design, Cellular Synthesis, and Topological Transformation
Yajie Liu, Wenhao Wu, Sumin Hong, Jing Fang, Fan Zhang, Gengxin Liu, Jongcheol Seo, Wenbin Zhang
SJR Q1Angewandte Chemie International Edition

Entangled proteins have attracted significant research interest. Herein, we report the first rationally designed lasso proteins, or protein [1]rotaxanes, by using a p53dim-entwined dimer for intramolecular entanglement and a SpyTag-SpyCatcher reaction for side-chain ring closure. The lasso structures were confirmed by proteolytic digestion, mutation, NMR spectrometry, and controlled ligation. Their dynamic properties were probed by experiments such as end-capping, proteolytic digestion, and heat

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|33 citations·2017
Side-chain effects on the structures of protonated amino acid dimers: A gas-phase infrared spectroscopy study
Jongcheol Seo, Waldemar Hoffmann, Sebastian Malerz, Stephan Warnke, Michael T. Bowers, Kevin Pagel, Gert von Helden
SJR Q3International Journal of Mass Spectrometry
SpectroscopyChemistry
10
Article|30 citations·2019
Annulative π-Extension of Unactivated Benzene Derivatives through Nondirected C–H Arylation
Jae Bin Lee, Min Ho Jeon, Jeong Kon Seo, Jeong Kon Seo, Gert von Helden, Jan‐Uwe Rohde, Bum Suk Zhao, Jongcheol Seo, Jongcheol Seo, Sung You Hong
SJR Q1Organic Letters

Annulative π-extension chemistry provides a concise synthetic route to polycyclic arenes. Herein, we disclose a nondirected annulation approach of unactivated simple arenes. The palladium-catalyzed 2-fold C-H arylation event facilitates tandem C-C linkage relays to furnish fully benzenoid triphenylene frameworks using cyclic diaryliodonium salts. The inseparable regioisomeric mixture of 1- and 2-methyltriphenylenes is identified by the combined analysis of ion mobility-mass spectrometry, gas-pha

Organic ChemistryChemistry
11
Article|25 citations·2021
Nickelocene as an Air- and Moisture-Tolerant Precatalyst in the Regioselective Synthesis of Multisubstituted Pyridines
Il Young Cho, Woo Gyum Kim, Ji Hwan Jeon, Jeong Woo Lee, Jeong Kon Seo, Jeong Kon Seo, Jongcheol Seo, Jongcheol Seo, Sung You Hong
SJR Q2The Journal of Organic Chemistry

-catalyzed cycloaddition reactions to access pyridines have been extensively studied. However, this catalyst typically requires drying procedures and inert-atmosphere techniques for the reactions. Herein, we report operationally simple nickel(0) catalysis to access substituted pyridines from various nitriles and 1,6-diynes without the aid of air-free techniques. The Ni-Xantphos-based catalytic manifold is tolerant to air, moisture, and heat while promoting the [2 + 2 + 2] cycloaddition reactions

Inorganic ChemistryChemistry
12
Article|13 citations·2012
Specific and nonspecific bindings of alkaline-earth metal ions to guanine-quadruplex thrombin-binding aptamer DNA
Jongcheol Seo, Eun Sun Hong, Hye‐Joo Yoon, Seung Koo Shin
SJR Q3International Journal of Mass Spectrometry
Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|13 citations·2008
Mass-Balanced 1H/2H Isotope Dipeptide Tag for Simultaneous Protein Quantitation and Identification
Jongcheol Seo, Min-Soo Suh, T. Daniel Thangadurai, Jin-Hee Kim, Young Ho Rhee, Hye‐Joo Yoon, Seung Koo Shin
SJR Q1Analytical Chemistry

Mass-balanced (1)H/(2)H isotope dipeptide tags (MBITs) are presented for simultaneous protein quantitation and identification. MBIT is derived from N-acetyl-Ala-Ala dipeptide and conjugated to primary amines of target peptides. (1)H/(2)H isotopes are encoded in the methyl groups of N-acetylated dipeptide: one tag deuterated on the N-acetyl group and another on the C-terminal alanine. MBIT-linked peptides comigrate in reversed-phase liquid chromatography without significant (1)H/(2)H isotope effe

SpectroscopyChemistry
14
Article|11 citations·2022
Cobalt-Catalyzed Formation of Grignard Reagents via C–O or C–S Bond Activation
Ewa Pietrasiak, Seongmin Ha, Seungwon Jeon, Jongheon Jeong, Jiyeon Lee, Jongcheol Seo, Eunsung Lee
SJR Q2The Journal of Organic Chemistry

C(aryl)-OMe bond functionalization catalyzed by cobalt(II) chloride in combination with a nacnac-type ligand and magnesium as a reductant is reported. Borylation and benzoylation of aryl methoxides are demonstrated, and C(aryl)-SMe bond borylation can be achieved under similar conditions. This is the first example of achieving these transformations using cobalt catalysis. Mechanistic studies suggest that a Grignard reagent is generated as an intermediate in a rare example of a magnesiation <i>vi

Organic ChemistryChemistry
15
Article|8 citations·2008
The Kinetics of Competing Multiple-Barrier Unimolecular Dissociations of o-, m-, and p-Chlorotoluene Radical Cations
Jongcheol Seo, Hyun‐Il Seo, Seung‐Joon Kim, Seung Koo Shin
SJR Q2The Journal of Physical Chemistry A

The kinetics of competing multiple-barrier unimolecular dissociations of o-, m-, and p-chlorotoluene radical cations to C7H7(+) (benzyl and tropylium) are studied by ab initio/Rice-Ramsperger-Kassel-Marcus (RRKM) calculations. This system presents a very intriguing kinetic example in which the conventional approach assuming a single-barrier or a double-well potential surface with one transition state cannot predict or explain the outcome. The molecular parameters obtained at the SCF level of the

Physical and Theoretical ChemistryChemistry

Research Areas

SpectroscopyMolecular BiologyOrganic ChemistryMaterials ChemistryElectrical and Electronic EngineeringAtomic and Molecular Physics, and Optics

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