사진

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Kim, Hajin (김하진)

Department
Department of Biomedical Engineering(바이오메디컬공학과)
Website
http://single.unist.ac.kr/
Lab
Single Molecule Biophysics Lab. (단분자 생물물리학 연구실)
Research Keywords
Biophysics, biological Motors, Single Molecule Dynamics, fluorescence Spectroscopy, molecular motors, Genome Imaging, Chromatin Dynamics, Super-Resolution Microscopy, Single Molecule Mechanobiology
Research Interests
We look at “Life”, molecule by molecule. Single molecule approaches to biology and biophysics reveal unforeseen details about the building blocks of biology. From these, we can understand the role of fluctuations and the interplay of molecules, to open new insights into the functioning of the biomolecules. These insights can provide novel strategies toward biomedical problems as well as answers to scientific questions. We develop and combine cutting-edge single molecule and single cell techniques to solve important problems in biological science, including the organization and dynamics of chromosomes, biomolecular recognition/assembly, molecular machinery working on nucleic acids, and intrinsically disordered proteins. Our study requires cross-disciplinary efforts from biologists, physicists, chemists, and engineering scientists and we pursue collaborations with groups from diverse scientific disciplines. One of our major interests is to uncover the molecular level principles that govern the spatiotemporal organization of chromatin and its epigenetic control for regulating DNA repair and gene expression, eventually determining the fate of the cell.
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Issue DateTitleAuthor(s)TypeViewAltmetrics
2011-06Visualization of the nanospring dynamics of the I kappa B alpha ankyrin repeat domain in real timeLamboy, Jorge A.; Kim, Hajin; Lee, Kyung Suk, et alARTICLE561 Visualization of the nanospring dynamics of the I kappa B alpha ankyrin repeat domain in real time
2011-05Protein induced fluorescence enhancement as a single molecule assay with short distance sensitivityHwang, Helen; Kim, Hajin; Myong, SuaARTICLE605 Protein induced fluorescence enhancement as a single molecule assay with short distance sensitivity
2006-04Conformational molecular switch of the azobenzene molecule: A scanning tunneling microscopy studyChoi, BY; Kahng, SJ; Kim, S, et alARTICLE660 Conformational molecular switch of the azobenzene molecule: A scanning tunneling microscopy study
2005-10Paired gap states in a semiconducting carbon nanotube: Deep and shallow levelsLee, S; Kim, G; Kim, Hajin, et alARTICLE586 Paired gap states in a semiconducting carbon nanotube: Deep and shallow levels
2005-06Local electronic density of states of a semiconducting carbon nanotube interfaceKim, Hajin; Lee, Jhinhwan; Lee, Sungjun, et alARTICLE644 Local electronic density of states of a semiconducting carbon nanotube interface
2005-05Scanning tunneling spectroscopy of a semiconducting heterojunction nanotube on the Au(111) surfaceKim, Hajin; Lee, J; Lee, S, et alARTICLE543 Scanning tunneling spectroscopy of a semiconducting heterojunction nanotube on the Au(111) surface
2004-10Nano-scale structures of a one-dimensional junctionKim, Hajin; Lee, J; Song, YJ, et alARTICLE514 Nano-scale structures of a one-dimensional junction
2004-10Real space imaging of one-dimensional standing waves: Direct evidence for a Luttinger liquidLee, J; Eggert, S; Kim, Hajin, et alARTICLE594 Real space imaging of one-dimensional standing waves: Direct evidence for a Luttinger liquid
2003-07Functionalized one-dimensional wires and their interconnectionsKim, Hajin; Chung, HJ; Lee, J, et alARTICLE530 Functionalized one-dimensional wires and their interconnections
2003-05Direct observation of localized defect states in semiconductor nanotube junctionsKim, Hajin; Lee, J; Kahng, SJ, et alARTICLE581 Direct observation of localized defect states in semiconductor nanotube junctions
2003-02Functionalized one-dimensional devices and their interconnectionsKim, Hajin; Chung, HJ; Lee, J, et alARTICLE489
2002-02Bandgap modulation of carbon nanotubes by encapsulated metallofullerenesLee, J; Kim, Hajin; Kahng, SJ, et alARTICLE584 Bandgap modulation of carbon nanotubes by encapsulated metallofullerenes

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