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Research

연구자 검색

포스텍의 각 분야를 선도하며 학문과 혁신을 이끄는 연구자들을 소개합니다.

POSTECH

학력

  • 2012.09 ~ 2017.09 MASSACHUSETTS INSTITUTE OF TECHNOLOGY (MIT) (박사-Inorganic Chemistry)
  • 2008.09 ~ 2010.08 이화여자대학교 (석사-분석화학)
  • 2005.03 ~ 2008.08 이화여자대학교 (학사-화학)

주요경력

  • 2017.09 ~ 2020.01 NORTHWESTERN UNIV. DEPT. OF CHEMISTRY

학술지

국제전문학술지
  • ShapeDependent Locomotion of DNALinked Magnetic Nanoparticle Films, Nano Letters, , 25, 419-425 (2025 )
  • From structure to function Harnessing the ionic conductivity of covalent organic frameworks, Bulletin of the Korean Chemical Society, , 45, 296-307 (2024 )
  • AcidDependent Charge Transport in a SolutionProcessed 2D Conductive MetalOrganic Framework, Journal of the American Chemical Society, , 146, 11493-11499 (2024 )
  • Solventinduced structural rearrangement in ultrasoundassisted synthesis of metalorganic frameworks, Small Methods, , 8, - (2024 )
  • Tailoring electrochemical water oxidation activity from the isostructural series of alkalinestable bimetallic FeNiazolate metalorganic frameworks, Advanced Energy Materials, , 14, - (2024 )
  • Chemically synthesized poly34ethylenedioxythiophene conducting polymer as a robust electrocatalyst for highly efficient dyesensitized solar cells, Nanoscale, , , - (2024 )
  • Fabricating LargeArea Thin Films of 2D Conductive MetalOrganic Frameworks, Accounts of Chemical Research, , 57, 2336-2346 (2024 )
  • PostModification Approach for SelfExfoliated Synthesis of Pyridinium Sulfobetaine Covalent Organic Frameworks for Enhanced LithiumIon Conductivity, ACS Applied Materials Interfaces, , 16, 48203-48210 (2024 )
  • Au25 ClusterBased Atomically Precise Coordination Frameworks and Emission Engineering through Lattice Symmetry, ACS Nano, , 18, 29036-29044 (2024 )
  • MolecularLevel Pore Tuning in 2D Conductive Metal–Organic Frameworks for Advanced Supercapacitor Performance, Journal of the American Chemical Society, , 146, 29767-29772 (2024 )
  • Elucidation of the Transformation of Coordination Polymer Intermediates into 2D Metal–Organic Framework Films during Chemical Vapor Deposition, Inorganic Chemistry, , 63, 22662-22666 (2024 )
  • Heterogenization of Molecular Electrocatalytic Active Sites through Reticular Chemistry, Advanced Materials, , 35, 2203791- (2023 )
  • Programming “Atomic Substitution” in Alloy Colloidal Crystals Using DNA, Nano Letters, , 22, 280-285 (2022 )
  • Promoting Oxygen Evolution Reaction Induced by Synergetic Geometric and Electronic Effects of IrCo ThinFilm Electrocatalysts br, ACS CATALYSIS, , 12, 6334-6344 (2022 )
  • Chemical Vapor Deposition of Edgeon Oriented 2D Conductive MetalOrganic Framework Thin Films, Journal of the American Chemical Society, , 144, 16726-16731 (2022 )
  • Probing the Consequences of Cubic Particle Shape and Applied Field on Colloidal Crystal Engineering with DNA, Angewandte Chemie International Edition, , 60, 4065-4069 (2021 )
  • DNA‐ and Field‐Mediated Assembly of Magnetic Nanoparticles into High‐Aspect Ratio Crystals, ADVANCED MATERIALS, , 32, 1906626- (2020 )
  • Toward New 2D ZirconiumBased Metal–Organic Frameworks Synthesis Structures and Electronic Properties, CHEMISTRY OF MATERIALS, , 32, 97-104 (2020 )
  • Isoreticular Linker Substitution in Conductive MetalOrganic Frameworks with ThroughSpace Transport Pathways, Angewandte Chemie International Edition, , 59, 19623-19626 (2020 )
  • Colloidal crystal engineering with metalorganic framework nanoparticles and DNA, Nature Communications, , 11, - (2020 )
  • Stabilization of colloidal crystals engineered with DNA, ADVANCED MATERIALS, , 31, 1805480- (2019 )
  • Tunable mixed-valence doping toward record electrical conductivity in a three-dimensional metal–organic framework, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, , 140, 7411-7414 (2019 )
  • High Li and Mg2 Conductivity in a CuAzolate Metal–Organic Framework, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, , 141, 4422-4427 (2019 )
  • Conductive 2D metalorganic framework for highperformance cathodes in aqueous rechargeable zinc batteries, Nature Communications, , 10, 4948- (2019 )
  • Selective Vapor Pressure Dependent Proton Transport in a Metal–Organic Framework with Two Distinct Hydrophilic Pores, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, , 140, 2016-2019 (2018 )
  • Tunable mixedvalence doping toward record electrical conductivity in a threedimensional metal–organic framework, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, , 140, 7411-7414 (2018 )
  • The Organic Secondary Building Unit Strong Intermolecular π Interactions Define Topology in MIT25 a Mesoporous MOF with ProtonReplete Channels, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, , 139, 3619-3622 (2017 )
  • Is Iron unique in promoting electrical conductivity in MOFs, Chemical Science, , 8, 4450-4457 (2017 )
  • SingleIon Li Na and Mg2 Solid Electrolytes Supported by a Mesoporous Anionic Cu–Azolate Metal–Organic Framework, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, , 139, 13260-13263 (2017 )

IP

  • 박선아,이재경,이승준, 금속 유기 구조체 및 이의 제조방법, 한국, 10-2024-0181920 (P202)
  • 박선아,이재경,이승준, 금속 유기 구조체 및 이의 제조방법, 한국, 10-2024-0065371 (IP24)

학회발표

  • Electrically conductive metalorganic framework thin films, , 0, 0, - (2024)
  • Electrically Conductive MetalOrganic Framework Thin Films, , 0, 0, - (2024)
  • MolecularLevel Pore Tuning in 2D Conductive Metal–Organic Frameworks for Advanced Supercapacitor Performance, , 0, 0, - (2024)
  • Structural Insights into NIRII Photoluminescence of Atomically Precise Nanocluster Superlattices, , 0, 0, - (2024)
  • Electrochemical Capacitance and Synthetic Pore Modification in 2D Conductive MetalOrganic Framework, , 0, 0, - (2024)
  • Electrically Conductive MetalOrganic Framework Thin Films, , 0, 0, - (2024)
  • Electrically Conductive MetalOrganic Framework Thin Films, , 0, 0, - (2024)
  • Developing Novel Synthesis Method for Goldbased Alloy Nanocluster Utilizing Isomeric Thiol Ligands, , 0, 0, - (2024)
  • Luminescence Properties in Atomically Defined Au25 ClusterBased Superlattice, , 0, 0, - (2024)
  • Chemical Vapor Deposition of Edgeon Oriented 2D Conductive Metalorganic Framework Thin Film, , 0, 0, - (2024)
  • Luminescence Properties in Atomically Defined Au25 ClusterBased Superlattice, , 0, 0, - (2024)
  • AcidDependent Charge Transport in a SolutionProcessed 2D Conductive MetalOrganic Framework, , 0, 0, - (2024)
  • Electrically conductive metalorganic framework thin films, , 0, 0, - (2024)
  • Synthesis of conductive metalorganic framework thin films, , 0, 0, - (2024)
  • Au25 ClusterBased Atomically Precise Coordination Colloidal Crystals and Emission Engineering through Lattice Symmetry, , 0, 0, - (2024)
  • SYNTHESIS OF CONDUCTIVE METALORGANIC FRAMEWORK THIN FILMS, , 0, 0, - (2024)
  • SYNTHESIS OF CONDUCTIVE METALORGANIC FRAMEWORK THIN FILMS, , 0, 0, - (2023)
  • ELECTRICALLY CONDUCTIVE METALORGANIC FRAMEWORK THIN FILMS, , 0, 0, - (2023)
  • Conductive MetalOrganic Framework Thin Films, , 0, 0, - (2023)
  • Synthesis of Conductive MetalOrganic Framework Thin Films, , 0, 0, - (2023)
  • Electrically Conductive MetalOragnic Framework Thin Films, , 0, 0, - (2023)
  • Electrically Conductive MetalOragnic Framework Thin Films, , 0, 0, - (2023)
  • Correlation Between Optical Property and Atomically Defined Structure in Au25 cluster superlattice, , 0, 0, - (2023)
  • Synthesis of zwitterionic polymermodified metalorganic frameworks as a quasisolidstate electrolyte, , 0, 0, - (2023)
  • Catalyzing electrochemical oxygen evolution using Feincorporated alkalinestable metalorganic frameworks , , 0, 0, - (2023)
  • Synthesis of polyMOF as a quasisolidstate electrolyte material, , 0, 0, - (2023)
  • Electrically Conductive MetalOragnic Framework Thin Films, , 0, 0, - (2023)
  • Conductive Metal Organic Framework Thin Films, , 0, 0, - (2023)
  • Synthesis of zwitterionic polymermodified metalorganic frameworks as a solidstate electrolyte, , 0, 0, - (2023)
  • Singlestep chemical vapor deposition of edgeon oriented 2D conductive metalorganic framework thin films , , 0, 0, - (2023)
  • SYNTHESIS OF CONDUCTIVE METALORGANIC FRAMEWORK THIN FILMS, , 0, 0, - (2023)
  • SYNTHESIS OF CONDUCTIVE METALORGANIC FRAMEWORK THIN FILMS, , 0, 0, - (2023)
  • ELECTRICALLY CONDUCTIVE METALORGANIC FRAMEWORK THIN FILMS, , 0, 0, - (2023)
  • Electrically Conductive MetalOrganic Framework Thin Films, , 0, 0, - (2022)
  • Synthesis of electrically conductive metalorganic framework thin films, , 0, 0, - (2022)
  • Chemical vapor deposition synthesis of edgeon oriented 2D conductive metalorganic framework thin films , , 0, 0, - (2022)
  • Electrically Conductive MetalOrganic Framework, , 0, 0, - (2022)
  • Correlation Between Optical Property and Atomically Defined Structure in Au25 cluster framework , , 0, 0, - (2022)
  • CONSTRUCTING CONDUCTIVE METALORAGNIC FRAMEWORKS, , 0, 0, - (2022)
  • ELECTRON AND IONCONDUCTING METALORGANIC FRAMEWORKS, , 0, 0, - (2022)
  • ELECTRON AND IONCONDUCTING METALORGANIC FRAMEWORKS, , 0, 0, - (2022)
  • ELECTRON AND IONCONDUCTING METALORGANIC FRAMEWORKS, , 0, 0, - (2022)
  • Chemical vapor deposition of edgeon oriented 2D conductive metalorganic framework thin films , , 0, 0, - (2022)
  • ELECTRON AND IONCONDUCTING METALORGANIC FRAMEWORKS, , 0, 0, - (2022)
  • Electrically Conductive MetalOrganic Frameworks, , 0, 0, - (2022)
  • Synthesis of Highly Conductive 2D MetalOrganic Framework Thin Film by Chemical Vapor Deposition, , 0, 0, - (2022)
  • Cluster Frameworks, , 0, 0, - (2022)
  • COLLOIDAL CRYSTALS ENGINEERED WITH DNA, , 0, 0, - (2021)
  • CONSTRUCTING THE FUNCTIONAL SOLIDSTATE MATERIALS AT THE ATOMIC AND NANOSCALE, , 0, 0, - (2021)
  • CONDUCTIVE METALORGANIC FRAMEWORKS SYNTHESIS AND APPLICATIONS, , 0, 0, - (2021)
  • Colloidal crystals engineered with DNA, , 0, 0, - (2021)
  • Cluster Frameworks, , 0, 0, - (2021)
  • CONSTRUCTING CONDUCTIVE METALORGANIC FRAMEWORKS, , 0, 0, - (2021)
  • ELECTRON AND IONCONDUCTIVE METAL ORGANIC FRAMEWORKS, , 0, 0, - (2021)
  • ELECTRON AND IONCONDUCTING METALORGANIC FRAMEWORKS, , 0, 0, - (2021)
  • CONDUCTIVE METALORGANIC FRAMEWORKS SYNTHESIS AND APPLICATIONS, , 0, 0, - (2021)
  • 전기 전도성 금속유기 구조체의 합성과 활용, , 0, 0, - (2021)
  • 수분흡착용 금속유기 구조체 기술상황, , 0, 0, - (2020)
  • CONSTRUCTING CONDDUCTIVE METALORAGNIC FRAMEWORKS, , 0, 0, - (2020)
  • CONSTRUCTING CONDDUCTIVE METALORAGNIC FRAMEWORKS, , 0, 0, - (2020)
  • CONSTRUCTING CONDDUCTIVE METALORAGNIC FRAMEWORKS, , 0, 0, - (2020)
  • CONSTRUCTING CONDDUCTIVE METALORAGNIC FRAMEWORKS, , 0, 0, - (2020)
  • Constructing Conductive MetalOrganic Frameworks, , 0, 0, - (2020)
  • Electrically Conductive MetalOrganic Frameworks, , 0, 0, - (2020)
  • Electron and IonConducting MetalOrganic Frameworks, ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 256, 0, 0, - (2018)

연구실적

  • 금속-유기 구조체 나노입자 표면 기능화 및 이온성 액체와의 이온교환 반응을 통한 기공성 액체 개발, 재단법인한국연구재단 (2020-2021)
  • 박선아 신규부임교수 기자재지원(1차_대학), 포항공과대학교 (2020-2021)
  • 박선아 신규부임교수 연구비지원(1차_대학), 포항공과대학교 (2020-2021)
  • 박선아_신규부임교수 기자재지원(1차_학과), 포항공과대학교 (2020-2021)
  • 박선아 신규부임교수 기자재지원(1차), 포항공과대학교 (2020-2021)
  • 연구개발과제[2021년 신설], 포항공과대학교 (2021-2040)
  • 금속-유기 구조체 나노입자 표면 기능화 및 이온성 액체와의 이온교환 반응을 통한 기공성 액체 개발, 재단법인한국연구재단 (2021-2022)
  • 박선아 신규부임교수 기자재지원(2차_학과), 포항공과대학교 (2021-2022)
  • 전기화학적 이산화탄소 환원을 통한 에너지 저장, 재단법인 포스코청암재단 (2021-2023)
  • 4.0019710_이월과제, 재단법인한국연구재단 (2021-2022)
  • 박선아 신규부임교수 초기정착비, 포항공과대학교 (2021-2022)
  • FCEV 수소연료 저장 밀도 향상을 위한 신 수소저장 기술 탐색, 현대엔지비(주) (2021-2021)
  • FCEV 수소연료 저장 밀도 향상을 위한 수소저장물질 개발, 현대엔지비(주) (2022-2023)
  • 박선아 신규부임교수 초기정착비(3차_대학), 포항공과대학교 (2022-2023)
  • 박선아 신규부임교수 초기정착비(3차_학과), 포항공과대학교 (2022-2023)
  • 금속-유기 구조체 나노입자 표면 기능화 및 이온성 액체와의 이온교환 반응을 통한 기공성 액체 개발, 재단법인한국연구재단 (2022-2023)
  • 4.0021368_이월과제, 재단법인한국연구재단 (2022-2023)
  • [ALCHEMIST_1차]원자 단위 MLX 금속-리간드 배위 환경 제어를 통한 전기 촉매 활성 개질 및 반응 원리 규명, 포항공과대학교 (2022-2023)
  • 높은 가공성과 기능성의 전도성 금속-유기 구조체 개발 및 응용, 재단법인한국연구재단 (2023-2024)
  • [ALCHEMIST_2차]원자 단위 MLX 금속-리간드 배위 환경 제어를 통한 전기 촉매 활성 개질 및 반응 원리 규명, 포항공과대학교 (2023-2023)
  • 수소저장용 MOF의 SCALE-UP을 위한 합성 방법 개발 및 최적화, 현대엔지비(주) (2023-2024)
  • 높은 가공성과 기능성의 전도성 금속-유기 구조체 개발 및 응용, 재단법인한국연구재단 (2024-2025)
  • 4.0026094_이월과제, 재단법인한국연구재단 (2024-2025)
  • 나노-소재 데이터 기반 다양한 유/무기 소재의 전기적 특성 예측이 가능한 머신러닝 모델 개발, 재단법인한국연구재단 (2024-2025)

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