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홍정석

Jung Sug Hong
Postdoc · Artificial bone materials · Seoul National University
16
논문
0
교신저자
2015–2025
활동 기간
Oxidation5CO213Other4

연구 프로필

홍정석 님은 2015–2025년 동안 Oxidation·CO2·Other 팀에서 16편의 논문에 참여했습니다. 주 연구 분야는 Artificial bone materials.

주요 주제
#electrocatalysis#CO2 to chemical#water splitting#water oxidation#electrosynthesis#photoanode
소개

Jung Sug Hong (홍정석)

기본 정보

항목
한글 이름홍정석
역할 (homepage)Postdoc
현재 소속Seoul National University
졸업 연도-
이메일hongjs@snu.ac.kr
활동 시기2015~2025
참여 논문16편
Corresponding0회
주 팀 분포CO₂(13), Oxidation(5), Other(4)
연구 주제 (homepage)Artificial bone materials
Homepage statuscurrent
기타 소속 이력Seoul National University
학력 (lab 홈페이지)PhD: Materials Science & Engineering, Seoul National University

한 줄 정의

CO₂ 팀의 현역 박사후 연구원으로, H₂O₂ 전기합성·CO₂ 매개 라디칼 화학의 핵심 실행자.

시그니처 라인

H₂O₂ 전기합성 라인 — CO₂를 라디칼 매개체로 활용해 저염도 조건 H₂O₂ 합성을 가능케 하는 새로운 방향.

참여 논문

연도저널제목corresponding?
2015-Graphene Quantum Sheet Catalyzed Silicon Photocathode for Selective CO₂ Conversion to CO
2016-Recent advances in heterogeneous Mn-based electrocatalysts toward biological photosyntheti
2016-Microsoft Word 2296627_File000011_39322603.doc
2017-[01] 12번 17-001 남기태.fm
2017-Supporting Information for Design Principle and Loss Engineering for Photovoltaic-Electrol
2017-Supporting Information Selective Electrochemical Production of Formate from Carbon Dioxide
2018-Efficient Water Splitting Cascade Photoanodes with Ligand‐Engineered MnO Cocatalysts
2020-Nickel‐Doping Effect on Mn₃O₄ Nanoparticles for Electrochemical Water Oxidation under Neut
2020-Electrocatalytic Reduction of CO₂ to Ethylene by Molecular Cu‐Complex Immobilized on Graph
2020-Recent advances in heterogeneous Mn-based electrocatalysts toward biological photosyntheti
2022-High‐Throughput Pb Recycling for Perovskite Solar Cells Using Biomimetic Whitlockite
2024-Supporting Information Thin Titanium Nitride Layer-Inserted Porous Ru₀.3Sn0.35Ti0.35O2-x A
2025-High Captured Carbon Content Bioplastic Film from Spirulina
2025-Supporting Information Electrochemical Synthesis of 2,5-Furandicarboxylic Acid (FDCA) from
2025-Supporting Information Bioinspired Lignin-Aluminosilicate Composite for CO₂ Storage Jeong
2025-SUPPORTING INFORMATION Low-Salt Electrochemical Synthesis of H₂O₂ Enabled by CO₂-Mediated

총 16편

관련 노트

  • 주 팀 개관: 참여 팀별 00_team_overview.md 참조
  • 함께 활동하는 인물: Ki_Tae_Nam.md (PI)

참여 논문 (16)

2025· ACS Omega
Low-Salt Electrochemical Synthesis of H2O2 Enabled by CO2-Mediated Radical Chemistry
CO2
2025· ACS Omega
Bioinspired Lignin-Aluminosilicate Composite for CO2 Storage
CO2
2025· ACS Sustainable Chemistry & Engineering
Electrochemical Synthesis of 2,5-Furandicarboxylic Acid from Furfural Derivative and Carbon Dioxide
CO2
2025· Advanced Sustainable Systems
High Captured Carbon Content Bioplastic Film from Spirulina
Other
2024· ACS Applied Energy Materials
Thin Titanium Nitride Layer-Inserted Porous Ru0.3Sn0.35Ti0.35O2–x Anode for Stable Chlorine Evolution Reaction
Other
2022· ENERGY & ENVIRONMENTAL MATERIALS
High‐Throughput Pb Recycling for Perovskite Solar Cells Using Biomimetic Whitlockite
Other
2020· Catalysis Today
Recent advances in heterogeneous Mn-based electrocatalysts toward biological photosynthetic Mn4Ca cluster
CO2
2020· Small
Electrocatalytic Reduction of CO2 to Ethylene by Molecular Cu‐Complex Immobilized on Graphitized Mesoporous Carbon
CO2
2020· Small Methods
Nickel‐Doping Effect on Mn3O4 Nanoparticles for Electrochemical Water Oxidation under Neutral Condition
Oxidation
2018· Advanced Science
Efficient Water Splitting Cascade Photoanodes with Ligand‐Engineered MnO Cocatalysts
Oxidation
2017· ACS Catalysis
Selective Electrochemical Production of Formate from Carbon Dioxide with Bismuth-Based Catalysts in an Aqueous Electrolyte
CO2
2017· ACS Omega
ao7b00012 1..10
Other
2017· Journal of the Korean Ceramic Society
[01] 12번 17-001 남기태.fm
CO2Oxidation
2016· Journal of the American Chemical Society
ja6b10657 1..9
Oxidation
2016· Catalysis Today
Recent advances in heterogeneous Mn-based electrocatalysts toward biological photosynthetic Mn4Ca cluster
CO2
2015
Graphene Quantum Sheet Catalyzed Silicon Photocathode for Selective CO2 Conversion to CO
CO2