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이대식 교수

Dae-Sik Lee

INFO

  • 소속캠퍼스한국전자통신연구원
  • 전공 컴퓨터 소프트웨어
  • 연락처042-860-1543
  • 출신전공나노공학
  • 학위박사
  • 최종출신대학Waseda University
  • 이메일

연구분야

바이오멤스, 바이오센서칩, 미세제작기술, 미세유체제어기술

BioMEMS, Biosensor chip, Micromachining, Microfluidics

대표연구실적

-  논문:최동훈, 이대식,윤준보/Use of a columnar metal thin film as a nanosieve with sub-10 nm pores/Advanced Materials/2012.08.24 -  논문;이대식,전병구,임춘화,박제균,정문연/A simple and smart telemedicine device for developing regions/Lab on a chip/2011.01.23 -  특허:이대식,정문연/Method of manufacturing hollow microneedle structures/미국특허/2012.06.19등록

논문(최근 5년)

-  Optical immunosensor for the quantification of C-telopeptide fragments of type II collagen as an osteoarthritis biomarker in urine[Biochip Journal,2013-08-01] -  Flexible NO2 gas sensor using multilayer grapheme films by chemical vapor deposition[Carbon Letters,2013-06-30] -  Pore Size Reduction Protocol for SiN Membrane Nanopore Using the Thermal Reflow in Nano-imprinting for NanoBio-based Sensing[Journal of Biomedical Optics,2014-05-30] -  A ppb-level formaldehyde gas sensor based on CuO nanocubesprepared using a polyol process[Sensors and Actuators B,2014-10-01] -  CuO nanocubes Gas Sensor for Ethanol Detection[Sensor Letters,2014-07-01] -  A Hollow Assembly and Its Three-Dimensional Network Formation of Single-Crystalline Co3O4 Nanoparticles for Ultrasensitive Formaldehyde Gas Sensors[The Journal of Physical Chemistry,2014-10-20] -  Microdevice for Separation of Circulating Tumor Cells Using Embedded Magnetophoresis with v-shaped Ni-Co Nanowires and Immuno- nanomagnetic beads[ETRI Journal,2015-04-01] -  Fabrication of a membrane filter with a controlled pore shape and its application to cell separation and single cell trapping[ JOURNAL OF MICROMECHANICS AND MICROENGINEERING,2015-09-09] -  Nonstoichiometric Co-rich ZnCo2O4 Hollow Nanospheres for High Performance Formaldehyde Detection at ppb Levels[ACS applied materials & interfaces,2016-02-15]

특허(최근 5년)

-  Method of manufacturing hollow microneedle structures[2013-03-26] -  Magnetic microvalve using a metal ball[2013-11-19] -  Microfluidic transportation device and method for manufacturing the same[2013-01-29] -  Reader for biochip in an ubiquitus environment[2013-07-31] -  One body apparatus for dividing and transporting of light in urine analysis using test strips[2014-02-12] -  Method and apparatus for PCR using a disposable polymer chip and natural convection[2014-05-27] -  Magnetic microvalve[2013-01-18] -  Portable digital reader for uroanalysis[2014-08-05] -  Fabrication method using hallow microneedle structures using thin thread[2012-12-11] -  Fabrication method of a SiN-based macromolecule filter using nanostructure[2013-01-10] -  Contamination-prevention module for a portable uroanalysis digital reader[2013-04-15] -  Digital reader for portable uroanalysis[2013-04-15] -  Magnetic microvalve using a metal ball[2013-06-05] -  Hallow Microneedle structures and its fabrication method[2013-04-30] -  Plastic microfluidic device controling of fluidic movements with multi-stages channel-depth controlled structure and their microfabrication methods[2013-12-31] -  Integrated interfereometric sensor system for biological detection[2014-01-13] -  SAMPLE ACQUISITION APPARATUS[2014-04-04] -  Nanoporous membrane and manufacturing method thereof[2014-09-16] -  Natural convection-driven PCR apparatus and method using disposable polymer chip[2014-05-27] -  Digital reader for portable uroanalysis[2014-10-22] -  PORTABLE DIGITAL READER FOR URINE ANALYSIS[2014-10-29] -  MICROFLUID CONTROL DEVICE AND METHOD OF MANUFACTURING THE SAME[2014-11-05] -  Portable digital reader for uroanalysis[2015-03-31] -  Multiple separation device and method of separating blood cancer cell[2015-10-13] -  Biochip identification apparatus, biochip and method of identifying biochip using the same[2015-11-04] -  광분배장치및이를이용[2015-08-04]