가톨릭대학교가톨릭대학교화학과

 

교수진

교수소개

이상민(Lee, Sang-Min) 프로필 이미지 학과장

이상민 교수

Lee, Sang-Min

연구분야

생화학

연구키워드

고분자화학 콜로이드 나노재료 약물전달 및 나노촉매

교수소개


						
이상민 교수는 연세대학교 화학과에서 학사학위를 받았으며, 한국과학기술원(KAIST) 화학과에서 석사학위를 받은 후, 미국 노스웨스턴대학교 화학과에서 박사학위를 받았다.  그 후 미국과학기술한림원(NAS)에서 국립연구평의회 학자금(NRC Associateship)을 수여 받아 미국 국립표준기술연구원(NIST)과 국립보건원(NIH)에서 NRC 연구원으로 근무하였다.  2012년부터 가톨릭대학교 화학과에서 근무하고 있으며, 현재 화학과 학과장 및 성심교정 공동기기센터장직을 수행하고 있다.  주요 연구 관심사는 리빙 라디칼 중합법을 이용한 기능성 고분자 재료 합성과 란타나이드 및 전이금속-킬레이트를 통한 고분자 나노 자기-조립체 형성, 그리고 이를 이용한 나노촉매 활성 분석 및 약물 전달체와 이미지 조영제 응용 분야이다.  현재 대한화학회 재료화학분과 학술간사 및 공업화학회 콜로이드 및 계면화학분과 임원으로 활동하고 있다. 
Sang-Min Lee is a professor in the Department of Chemistry at Catholic University.  He received his bachelor's degree from the Department of Chemistry at Yonsei University.  After receiving his master's degree from the Department of Chemistry at the Korea Advanced Institute of Science and Technology (KAIST), he received his doctorate from the Department of Chemistry at Northwestern University, USA.  Afterwards, he was awarded a National Research Council (NRC) Associateship from the National Academy of Science (NAS) to work as a joint researcher at the National Institute of Standards and Technology (NIST) and the National Institutes of Health (NIH).  Since 2012, he has been working in the Department of Chemistry at the Catholic University of Korea, where he currently serves as the Department Chair.  His main research interests are syntheses of functional polymer materials using living radical polymerization and formation of nanoscale polymer self-assembly through lanthanide and transition metal-chelates, which can be exploited for nanocatalysis, drug delivery, and imaging agents.  He currently serves as academic secretary of the Materials Chemistry Division of the Korean Chemical Society (KCS) and as a member of the Colloid and Interface Chemistry Division of the Korean Society of Industrial and Engineering Chemistry (KSIEC).

최종학력

2010.06.18 | 노스웨스턴대학교 | 화학 | 이학박사

연구실적

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    Copper-Chelated Thermoresponsive Polymer Nanocatalysts for Fenton-Like Reactions
  • 2022.08 | 교신저자 | ACS MACRO LETTERS, pp.1129-1135
    Polyphenol-Incorporated Composite Nanogels of Multimodal Interactions for Enhanced Gel Stability and Cisplatin Delivery
  • 2021.11 | 교신저자 | ACS MACRO LETTERS, pp.1602-1608
    Eu(III)-Chelated Polymeric Hybrid Nanoplatform for Luminescence Resonance Energy Transfer (LRET)-Based Real-Time Monitoring of Organic Cargo Release
  • 2021.04 | 교신저자 | ACS MACRO LETTERS, 제10권 4호, pp.492-497
    Cholesterol-Functionalized Linear/Brush Block Copolymers for Metal-Incorporated Nanostructures with Modulated Core Density and Enhanced Self-Assembly Efficiency
  • 2020.04 | 교신저자 | ACS MACRO LETTERS, 제9권 4호, pp.600-605
    Metal-Mediated Morphology Regulation of Self-Assembled Double-Hydrophilic Block Copolymers
  • 2019.05 | 교신저자 | LANGMUIR, 제35권 19호, pp.6421-6428
    Construction of Paramagnetic Manganese-Chelated Polymeric Nanoparticles Using Pyrene-End-Modified Double-Hydrophilic Block Copolymers for Enhanced Magnetic Resonance Relaxivity: A Comparative Study with Cisplatin Pharmacophore
  • 2018.07 | 교신저자 | ACS APPLIED MATERIALS & INTERFACES, 제10권 28호, pp.23617-23629
    Cisplatin-Encapsulated Polymeric Nanoparticles with Molecular Geometry-Regulated Colloidal Properties and Controlled Drug Release
  • 2018.02 | 교신저자 | JOURNAL OF THE KOREAN CHEMICAL SOCIETY, 제62권 1호, pp.24-29
    Electrostatic formation of chitosan-polyacrylate polyplex for the preparation of cross-linked hydrogel particles
  • 2017.09 | 교신저자 | LANGMUIR, 제33권 36호, pp.9091-9099
    Cisplatin-Mediated Formation of Polyampholytic Chitosan Nanoparticles with Attenuated Viscosity and pH-Sensitive Drug Release
  • 2017.07 | 단독 | LANGMUIR, 제33권 27호, pp.6751-6759
    Labile Incorporation of Cholesterol-Terminated Poly(acrylic acid) for the Facile Surface-Modification of Lipid Vesicles
  • 2013.12 | 제1저자 | MACROMOLECULES, 제46권 23호, pp.9169-9180
    Smart nanoscale drug delivery platforms from stimuli-responsive polymers and liposomes
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    Surface-engineered nanomaterials as X-ray absorbing adjuvant agents for Auger-mediated chemo-radiation
  • 2011.05 | 제1저자 | ACS NANO, 제5권 5호, pp.3961-3969
    Triggered Release of Pharmacophores from [Ni(HAsO(3))]-Loaded Polymer-Caged Nanobin Enhances Pro-apoptotic Activity: A Combined Experimental and Theoretical Study
  • 2010.12 | 제1저자 | JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 제132권 48호, pp.17130-17138
    Polymer-Caged Nanobins for Synergistic Cisplatin-Doxorubicin Combination Chemotherapy
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    Modular Polymer-Caged Nanobins as a Theranostic Platform with Enhanced Magnetic Resonance Relaxivity and pH-Responsive Drug Release
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    Biological Evaluation of pH-Responsive Polymer-Caged Nanobins for Breast Cancer Therapy
  • 2009.07 | 제1저자 | JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 제131권 26호, pp.9311-9320
    "Clickable" Polymer-Caged Nanobins as a Modular Drug Delivery Platform
  • 2007.12 | 제1저자 | JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 제129권 49호, pp.15096-15096
    Polymer-caged lipsomes: A pH-Responsive delivery system with high stability
  • 2004.02 | 공동저자 | , 제126권, pp.1950-1951
    Shape evolution of single-crystalline iron oxide nanocrystals
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    Anisotropic shape control of colloidal inorganic nanocrystals
  • 2002.11 | 공동저자 | , 제124권 46호, pp.13656-13657
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