Faculty Research Profile

바이오메디컬공학과

박종남

교수Jongnam Park

박종남

Jongnam Park

Biography

학력

· 2005: Ph.D. School of Chemical and Biological Eng., Seoul National University
· 2001: M.S. School of Chemical and Biological Eng., Seoul National University
· 1999: B.S. School of Chemical and Biological Eng., Seoul National University
· 1999: 서울대학교 화학생물공학부 공학사
· 2001: 서울대학교 화학생물공학부 공학석사
· 2005: 서울대학교 화학생물공학부 공학박사 (지도교수: 현택환 교수)

주요 경력

· 2017~Present: Associate Professor, UNIST
· 2017~2018: Visiting Professor, Department of Chemical and Biomolecular Engineering, University of Pennsylvania
· 2010~2017: Assistant Professor, UNIST
· 2006~2010: Postdoctoral Associate, Department of Chemistry, Massachusetts Institute of Technology
· 2005~2006: Postdoctoral Fellow, Institute of Molecular Biology and Genetics, Seoul National University

수상/학회/외부활동

· Member of Korean Institute of Chemical Engineers
· Member of Materials Research Society
· Member of American Chemical Society
· Member of Korean Chemical Society
· Full Post-doc associate of MIT (2007~2010)
· Korea Research Foundation Grant funded by Korean Government (2007)
· The Creative Knowledge Award by the Ministry of Education, Science and Technology, 지식창조대상 (2011)

Research

재료화학실험실

Materials and Chemistry Laboratory (MCL)

본 연구실은 에너지와 바이오 분야에 응용될 수 있는 첨단 나노재료를 개발하는 연구를 진행하고 있다. 그 중에서도 특히 고효율의 QD-LED 와 태양전지에 사용될 양자점 합성에 대한 연구와 미세 유체 반응기를 이용한 고수율의 균일한 나노물질의 대량 합성에 대한 연구를 중점적으로 하고 있다. 또한, 생물학적 응용을 위한 분자 영상, 감지, 타겟팅에 사용될 나노물질의 표면 처리를 통한 나노메디신 개발에 관한 연구를 진행하고 있다.
Our research focuses on the nanotechnology based on materials chemistry, developing of advanced nanomaterials for energy and biological application. Of particular interest are areas regarding the designed synthesis of quantum dots for highly efficient QD-LED & solar cell and the development of system to achieve high yield & narrow size distribution of various nanomaterials using micro-fluidics system. We are also interested in the surface engineering of nanomaterials for molecular imaging, sensing, and targeting for biological applications.

Our research focuses on the nanotechnology based on materials chemistry, developing of advanced nanomaterials for energy and biological application. Of particular interest are areas regarding the designed synthesis of quantum dots for highly efficient QD-LED & solar cell and the development of system to achieve high yield & narrow size distribution of various nanomaterials using micro-fluidics system. We are also interested in the surface engineering of nanomaterials for molecular imaging, sensing, and targeting for biological applications.

재료화학실험실

연구분야

Quantum Dots, Inorganic Synthesis, Nanomaterials, Surface Engineering, Bioimaging & Biosensor

Quantum Dots, Inorganic Synthesis, Nanomaterials, Surface Engineering, Bioimaging & Biosensor

연구 희망분야

Quantum Dots, Inorganic Synthesis, Nanomaterials, Surface Engineering, Bioimaging & Biosensor

연구주제

· 양자점, 무기합성, 나노재료, 표면공학, 바이오 이미징 & 바이오센서
Quantum Dots, Inorganic Synthesis, Nanomaterials, Surface Engineering, Bioimaging & Biosensor
· 에너지와 바이오 응용을 위한 표면이 개질된 나노재료의 디자인 및 합성
Designed synthesis of nanomaterials for energy and biological application via surface engineering
· 발광소자 및 나노의약품향 신규 양자점 개발
Development of new quantum dots for LED and nanomedicine
· MRI, 광학 이미징, 바이오 센서, 분자감지, 표적형 약물 전달 시스템 등의 나노메디신 개발
Bioapplication of nanomaterials including biosensor, MR/optical imaging, molecular sensing, targeting, and drug delivery system

· Quantum Dots, Inorganic Synthesis, Nanomaterials, Surface Engineering, Bioimaging & Biosensor
· Designed synthesis of nanomaterials for energy and biological application via surface engineering
· Development of new quantum dots for LED and nanomedicine
· Bioapplication of nanomaterials including biosensor, MR/optical imaging, molecular sensing, targeting, and drug delivery system

국가연구개발사업 기술 분류체계

국가과학기술표준분류

EC. 화공 > EC02. 나노화학공정기술 > EC0201. 나노소재 합성기술

Outputs

논문

· Eunbyul Bang, Yonghoon Choi, Jinhee Cho, Yo-Han Suh, Hyeong Woo Ban, Jae Sung Son, and Jongnam Park*, "Large-Scale Synthesis of Highly Luminescent InP@ZnS Quantum Dots Using Elemental Phosphorus Precursor" Chem. Mater., 29, 4236 (2017)
· Chungho Kim, Jin Wook Kim, Hyunhong Kim, Dong Hyeon Kim, Changhoon Choi, Yoon Seok Jung, Jongnam Park*, “Graphene Oxide Assisted Synthesis of Self-assembled Zinc Oxide for Lithium-Ion Battery Anode” Chem. Mater., 28,8498 (2016)
· Gi-Hwan Kim, Bright Walker, Hak-Beom Kim, Jin Young Kim, Edward H. Sargent*, Jongnam Park* and Jin Young Kim*, "Inverted Colloidal Quantum Dot Solar Cells“ Adv. Mater., 26, 3321 (2014)
· Jongnam Park, Kwangjin An, Yosun Hwang, Je-Geun Park, Han-Jin Noh, Jae–Young Kim, Jae-Hoon Park, Nong- Moon Hwang, and Taeghwan Hyeon*, “Ultra-Large Scale Syntheses of Monodisperse Nanocrystals” Nature materials, 3, 891 (2004)

특허

· Process for large-scale production of monodisperse nanoparticles, Jongnam Park and Taeghwan Hyeon, US 7,811,545 B2 (2010)
· Method of synthesizing nanorods by reaction of metal-surfactant complexes injected using a syringe pump, Jongnam Park and Taeghwan Hyeon, US 0214190 (2005)