Chongmok Lee Professor Emeritus

Professor Chong-Mok Lee is currently a professor of the Department of Chemistry and Nano Science, Ewha Womans University, Seoul, Korea and in charge of the President of Electrochemistry Division in Korean Chemical Society (KCS). He received his B.S. in 1981 from Seoul National University and M.S. in 1983 from Korea Advanced Institute of Science &Technology (KAIST). He received his Ph.D. in 1990 from The University of Texas at Austin under the supervision of Professor A. J. Bard and worked as a postdoctoral fellow at California Institute of Technology under the guidance of Professor F. C. Anson. In 1992 he joined the faculty of Ewha Womans University. His research field is in the area of electrochemistry and he published over 90 research papers. He also had served as a vice-president of KCS and director of Korean Electrochemical Society (KECS).
Research Record
- Electrochemically programmed evolution of 3-dimensional Ag-microstructure dictating dramatic Raman amplification for sensitive detection of molecules Materials Today Nano, 2023, v.24, 100381
- Fe-Cu-Rh ternary alloy nanofibers as an outstanding pH-universal electrocatalyst for hydrogen evolution reaction: The catalytic roles of Fe depending on pH Applied Surface Science, 2023, v.611, 155484
- Impact of controlling the crystallinity on bifunctional electrocatalytic performances toward methanol oxidation and oxygen reduction in binary Pd-Cr solid solution Journal of Materials Chemistry A, 2023, v.11 no.30, 16243-16254
- Oxygen-vacancy rich IrxMo1-xOy nanofibers for oxygen evolution reaction: excellent pH-universal and electrolyte-concentration-independent catalytic activity JOURNAL OF MATERIALS CHEMISTRY A, 2023, v.11 no.27, 14941-14951
- Single Phase Trimetallic Spinel CoCrxRh2-xO4 Nanofibers for Highly Efficient Oxygen Evolution Reaction under Freshwater Mimicking Seawater Conditions Advanced Functional Materials, 2023, v.33 no.25, 2301559
- Chromium-rich CrxIr1−xO2 wire-in-tube alloys for boosted water oxidation with long standing electrocatalytic activity Journal of Materials Chemistry A, 2022, v.10 no.26, 13803-13813
- IrO2-ZnO Composite Nanorod Array as an Acid-Stable Electrocatalyst with Superior Activity for the Oxygen Evolution Reaction ACS Applied Energy Materials, 2022, v.5 no.3, 3810-3820
- Iridium-copper oxide nanotubes catalyzing pH-universal oxygen evolution reaction with highly improved activity and durability via elemental substitution Journal of Alloys and Compounds, 2022, v.909, 164813
- Noble-metal-free single-phase Co3V2O8 with the structural integrity of nanofibers for the selective detection of ascorbic acid CRYSTENGCOMM, 2022, v.24 no.38, 6739-6746
- A fascinating pH independent catalyst for hydrogen evolution reaction: Crystalline bimetallic hcp-CoxRh1-x alloy nanofibers driven by thermally induced phase transition from a single phase of CoRh2O4 Applied Surface Science, 2021, v.553, 149568
- Amperometric Sensing of Carbon Monoxide: Improved Sensitivity and Selectivity via Nanostructure-Controlled Electrodeposition of Gold BIOSENSORS-BASEL, 2021, v.11 no.9, 334
- Au-Ru alloy nanofibers as a highly stable and active bifunctional electrocatalyst for acidic water splitting Applied Surface Science, 2021, v.563, 150293
- Direct growth of single crystalline ReO3 nanorods on a tungsten (W) microwire for enhanced electron-transfer reaction kinetics CURRENT APPLIED PHYSICS, 2021, v.21, 20-24
- Structural transformation between rutile and spinel crystal lattices in Ru-Co binary oxide nanotubes: enhanced electron transfer kinetics for the oxygen evolution reaction NANOSCALE, 2021, v.13 no.32, 13776-13785
- Au-Ir alloy nanofibers synthesized from Au-Ir/IrO2 composites via thermal hydrogen treatment: Application for glucose oxidation SENSORS AND ACTUATORS B-CHEMICAL, 2020, v.310, 127822
- Highly catalytic electrochemical oxidation of carbon monoxide on iridium nanotubes: Amperometric sensing of carbon monoxide Nanomaterials, 2020, v.10 no.6, 1-12
- NixRh1-x bimetallic alloy nanofibers as a pH-universal electrocatalyst for the hydrogen evolution reaction: the synthetic strategy and fascinating electroactivity JOURNAL OF MATERIALS CHEMISTRY A, 2020, v.8 no.17, 8629-8637
- NixRh1-xOy composite nanofibres as highly efficient and robust oxygen evolution electrocatalysts Journal of Alloys and Compounds, 2020, v.836, 155309
- Synthesis and Opto-Electrical Properties of Novel Conjugated Small Molecule Bearing a B <- N Moiety MACROMOLECULAR RESEARCH, 2020, v.28 no.10, 919-924
- An Efficient Electrochemical Sensor Driven by Hierarchical Hetero-Nanostructures Consisting of RuO2 Nanorods on WO3 Nanofibers for Detecting Biologically Relevant Molecules SENSORS, 2019, v.19 no.15, 3295
- Boosted Electron-Transfer Kinetics of Hydrogen Evolution Reaction at Bimetallic RhCo Alloy Nanotubes in Acidic Solution ACS APPLIED MATERIALS & INTERFACES, 2019, v.11 no.50, 46886-46893
- Comparative Study on Hydrogen Evolution Reaction Activity of Electrospun Nanofibers with Diverse Metallic Ir and IrO2 Composition Ratios ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2019, v.7 no.9, 8613-8620
- Selectivity enhancement of amperometric nitric oxide detection via shape-controlled electrodeposition of platinum nanostructures Analyst, 2019, v.144 no.1, 258-264
- Single phase of spinel Co2RhO4 nanotubes with remarkably enhanced catalytic performance for the oxygen evolution reaction NANOSCALE, 2019, v.11 no.19, 9287-9295
- Single-Step Electrospun Ir/IrO2 Nanofibrous Structures Decorated with Au Nanoparticles for Highly Catalytic Oxygen Evolution Reaction ACS Applied Materials and Interfaces, 2019, v.11 no.2, 1979-1987
- Electrodeposited nanoporous ruthenium oxide for simultaneous quantification of ascorbic acid and uric acid using chronoamperometry at two different potentials Sensors and Actuators, B: Chemical, 2018, v.255, 316-324
- Evolution of silver to a better electrocatalyst: Water-assisted oxygen reduction reaction at silver chloride nanowires in alkaline solution NANO ENERGY, 2018, v.48, 134-143
- Fundamental Study of Facile and Stable Hydrogen Evolution Reaction at Electrospun Ir and Ru Mixed Oxide Nanofibers ACS APPLIED MATERIALS & INTERFACES, 2018, v.10 no.1, 541-549
- Highly Dispersive Gold Nanoparticles on Carbon Black for Oxygen and Carbon Dioxide Reduction ELECTROANALYSIS, 2018, v.30 no.12, 2861-2868
- Local Electrodeposition of Metals by Tip Electrode Dissolution Using Scanning Electrochemical Microscopy ELECTROANALYSIS, 2018, v.30 no.11, 2689-2695
- Synthesis and catalytic activity of electrospun NiO/NiCo2O4 nanotubes for CO and acetaldehyde oxidation NANOTECHNOLOGY, 2018, v.29 no.17
- Synthesis of organic semiconductor bearing B <- N bridged thienylthiazole and diketopyrrolopyrrole for the applicaton of high open-circuit voltage organic photovoltaics DYES AND PIGMENTS, 2018, v.149, 858-866
- A facile growth process of highly single crystalline Ir1-xVxO2 mixed metal oxide nanorods and their electrochemical properties CRYSTENGCOMM, 2017, v.19 no.25, 3455-3464
- Nanotubular Iridium-Cobalt Mixed Oxide Crystalline Architectures Inherited from Cobalt Oxide for Highly Efficient Oxygen Evolution Reaction Catalysis ACS Applied Materials and Interfaces, 2017, v.9 no.40, 35057-35066
- One-pot electrodeposition of cobalt flower-decorated silver nanotrees for oxygen reduction reaction APPLIED SURFACE SCIENCE, 2017, v.394, 267-274
- Real-time Selective Detection of Hydrogen Peroxide Based on a Tantalum Deposited Pencil Lead Electrode for Evaluation of Enzyme Activities Electroanalysis, 2017, v.29 no.10, 2254-2260
- Electroactivity of nanoporous platinum depending on the porosity and potential for various electrode reactions Journal of Electroanalytical Chemistry, 2016, v.768, 121-128
- Electrodeposition of tantalum on carbon black in non-aqueous solution and its electrocatalytic properties Analytica Chimica Acta, 2016, v.933
- Facile Coating of Graphene Interlayer onto Li2S as a High Electrochemical Performance Cathode for Lithium Sulfur Battery Electrochimica Acta, 2016, v.210, 1-6
- Highly Efficient Silver-Cobalt Composite Nanotube Electrocatalysts for Favorable Oxygen Reduction Reaction ACS APPLIED MATERIALS & INTERFACES, 2016, v.8 no.48, 32833-32841
- Hybrid architecture of rhodium oxide nanofibers and ruthenium oxide nanowires for electrocatalysts JOURNAL OF ALLOYS AND COMPOUNDS, 2016, v.663, 574-580
- Real-time direct electrochemical sensing of ascorbic acid over rat liver tissues using RuO2 nanowires on electrospun TiO2 nanofibers Biosensors and Bioelectronics, 2016, v.77
- A cholesteryl thiazolothiazole derivative for colorimetric sensing of Cu2+ and its sol-gel transition Dyes and Pigments, 2015, v.122, 109-115
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Alteration of the morphology and electrocatalytic activity of IrO
2 nanowires upon reduction by hydrogen gas Sensors and Actuators, B: Chemical, 2015, v.216, 159-164 - Electrospun RuO2-Co3O4 hybrid nanotubes for enhanced electrocatalytic activity Materials Letters, 2015, v.139, 405-408
- Enhanced electrochemical performance of a ZnO-MnO composite as an anode material for lithium ion batteries Physical Chemistry Chemical Physics, 2015, v.17 no.36, 23496-23502
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Highly Branched RuO
2 Nanoneedles on Electrospun TiO2 Nanofibers as an Efficient Electrocatalytic Platform ACS Applied Materials and Interfaces, 2015, v.7 no.28, 15321-15330 - RuO2-ReO3 composite nanofibers for efficient electrocatalytic responses PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2015, v.17 no.11, 7435-7442
- Study of porosity-dependent oxygen reduction at porous platinum tips using scanning electrochemical microscopy Journal of the Electrochemical Society, 2015, v.162 no.10, H792-H798
- Biological application of RuO2 nanorods grown on a single carbon fiber for the real-time direct nitric oxide sensing SENSORS AND ACTUATORS B-CHEMICAL, 2014, v.191, 298-304
- Electrospun iridium oxide nanofibers for direct selective electrochemical detection of ascorbic acid SENSORS AND ACTUATORS B-CHEMICAL, 2014, v.196, 480-488
- Facile Synthesis of AuPd Nanochain Networks on Carbon Supports and Their Application as Electrocatalysts for Oxygen Reduction Reaction ELECTROANALYSIS, 2014, v.26 no.4, 723-731
- Nonenzymatic amperometric sensor for ascorbic acid based on hollow gold/ruthenium nanoshells ANALYTICA CHIMICA ACTA, 2014, v.819, 94-101
- Organic radical-induced Cu2+ selective sensing based on thiazolothiazole derivatives SENSORS AND ACTUATORS B-CHEMICAL, 2014, v.192, 691-696
- Spongelike Nanoporous Pd and Pd/Au Structures: Facile Synthesis and Enhanced Electrocatalytic Activity LANGMUIR, 2014, v.30 no.12, 3579-3588
- [학술지논문] Electrochemically programmed evolution of 3-dimensional Ag-microstructure dictating dramatic Raman amplification for sensitive detection of molecules MATERIALS TODAY NANO, 2023, v.24 no.0 , 100381-100381
- [학술지논문] Fe-Cu-Rh ternary alloy nanofibers as an outstanding pH-universal electrocatalyst for hydrogen evolution reaction: The catalytic roles of Fe depending on pH APPLIED SURFACE SCIENCE, 2023, v.611 no.1 , 155484-155484
- [학술지논문] Impact of controlling the crystallinity on bifunctional electrocatalytic performances toward methanol oxidation and oxygen reduction in binary Pd-Cr solid solution JOURNAL OF MATERIALS CHEMISTRY A, 2023, v.11 no.30 , 16243-16254
- [학술지논문] Oxygen-vacancy rich IrxMo1-xOy nanofibers for oxygen evolution reaction: excellent pH-universal and electrolyte-concentration-independent catalytic activity JOURNAL OF MATERIALS CHEMISTRY A, 2023, v.11 no.27 , 14941-14951
- [학술지논문] Single Phase Trimetallic Spinel CoCrxRh2-xO4 Nanofibers for Highly Efficient Oxygen Evolution Reaction under Freshwater Mimicking Seawater Conditions ADVANCED FUNCTIONAL MATERIALS, 2023, v.33 no.25 , 2301559-1-2301559-12
- [학술지논문] Chromium-rich CrxIr1-xO2 wire-in-tube alloys for boosted water oxidation with long standing electrocatalytic activity JOURNAL OF MATERIALS CHEMISTRY A, 2022, v.10 no.26 , 13803-13813
- [학술지논문] IrO2-ZnO Composite Nanorod Array as an Acid-Stable Electrocatalyst with Superior Activity for the Oxygen Evolution Reaction ACS APPLIED ENERGY MATERIALS, 2022, v.5 no.3 , 3810-3820
- [학술지논문] Iridium-copper oxide nanotubes catalyzing pH-universal oxygen evolution reaction with highly improved activity and durability via elemental substitution JOURNAL OF ALLOYS AND COMPOUNDS, 2022, v.909 no.0 , 164813-01-164813-10
- [학술지논문] Noble-metal-free single-phase Co3V2O8 with the structural integrity of nanofibers for the selective detection of ascorbic acid CRYSTENGCOMM, 2022, v.24 no.38 , 6739-6746
- [학술지논문] A fascinating pH independent catalyst for hydrogen evolution reaction: Crystalline bimetallic hcp-CoxRh1-x alloy nanofibers driven by thermally induced phase transition from a single phase of CoRh2O4 APPLIED SURFACE SCIENCE, 2021, v.553 no.0 , 149568-1-149568-9
- [학술지논문] Amperometric Sensing of Carbon Monoxide: Improved Sensitivity and Selectivity via Nanostructure-Controlled Electrodeposition of Gold Biosensors-Basel, 2021, v.11 no.9 , 334-334
- [학술지논문] Au-Ru alloy nanofibers as a highly stable and active bifunctional electrocatalyst for acidic water splitting APPLIED SURFACE SCIENCE, 2021, v.563 no.0 , 150293-1-150293-11
- [학술지논문] Direct growth of single crystalline ReO3 nanorods on a tungsten (W) microwire for enhanced electron-transfer reaction kinetics CURRENT APPLIED PHYSICS, 2021, v.21 no.0 , 20-24
- [학술지논문] Structural transformation between rutile and spinel crystal lattices in Ru-Co binary oxide nanotubes: enhanced electron transfer kinetics for the oxygen evolution reaction NANOSCALE, 2021, v.13 no.32 , 13776-13785
- [학술지논문] Au-Ir alloy nanofibers synthesized from Au-Ir/IrO2 composites via thermal hydrogen treatment: Application for glucose oxidation SENSORS AND ACTUATORS B-CHEMICAL, 2020, v.310 no.0 , 127822-127822
- [학술지논문] Highly Catalytic Electrochemical Oxidation of Carbon Monoxide on Iridium Nanotubes: Amperometric Sensing of Carbon Monoxide NANOMATERIALS, 2020, v.10 no.6 , 1140-1-1140-12
- [학술지논문] NixRh1-x bimetallic alloy nanofibers as a pH-universal electrocatalyst for the hydrogen evolution reaction: the synthetic strategy and fascinating electroactivity JOURNAL OF MATERIALS CHEMISTRY A, 2020, v.8 no.17 , 8629-8637
- [학술지논문] NixRh1-xOy composite nanofibres as highly efficient and robust oxygen evolution electrocatalysts JOURNAL OF ALLOYS AND COMPOUNDS, 2020, v.836 no.1 , 155309-1-155309-10
- [학술지논문] Synthesis and Opto-Electrical Properties of Novel Conjugated Small Molecule Bearing a B <- N Moiety MACROMOLECULAR RESEARCH, 2020, v.28 no.10 , 919-924
Courses
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2023-1st
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General Chemistry I 강의 계획서 상세보기
- Subject No 20416Class No 03
- 1Year ( 3Credit , 3Hour) Tue 6~6 (POSCO363) , Thu 4~4 (POSCO363)
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General Chemistry : Laboratory Work I 강의 계획서 상세보기
- Subject No 20418Class No 03
- 1Year ( 1Credit , 1.5Hour) Wed 6~6 (SCI-)
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General Chemistry : Laboratory Work I 강의 계획서 상세보기
- Subject No 20418Class No 04
- 1Year ( 1Credit , 1.5Hour) Thu 6~6 (SCI-)
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Research Ⅰ
- Subject No G12415Class No 01
- Year ( 3Credit , 6Hour) Sat 5~8 (D109)
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2022-2nd
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General Chemistry : Laboratory Work II
- Subject No 20419Class No 01
- 1Year ( 1Credit , 1.5Hour) Mon 6~6 (SCI-)
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General Chemistry : Laboratory Work II
- Subject No 20419Class No 02
- 1Year ( 1Credit , 1.5Hour) Tue 6~6 (SCI-)
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Instrumental Analysis
- Subject No 20548Class No 01
- 3Year ( 3Credit , 3Hour) Tue 3~3 (POSCO363) , Thu 2~2 (POSCO363)
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Advanced Research IV
- Subject No G10116Class No 01
- Year ( 3Credit , 6Hour) Sat 1~4 (D109)
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2022-1st
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General Chemistry I
- Subject No 20416Class No 02
- 1Year ( 3Credit , 3Hour) Mon 2~2 , Thu 3~3
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General Chemistry : Laboratory Work I
- Subject No 20418Class No 06
- 1Year ( 1Credit , 1.5Hour) Mon 6~6 (SCI-)
- Exchange students not allowed. This course may last until 7th class
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Advanced Research III
- Subject No G10115Class No 01
- Year ( 3Credit , 6Hour) Sat 5~8 (-)
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