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      Fabrication and Characterization of Free-Standing DBR porous silicon Film

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      https://www.riss.kr/link?id=A104201822

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      다국어 초록 (Multilingual Abstract)

      Distributed Bragg reflector porous silicon of different characteristics were formed to determine their optical constants in the visible wavelength range using a periodic square wave current between low and high current densities. The surface and cross-sectional SEM images of distributed Bragg reflector porous silicon were obtained using a cold field emission scanning electron microscope. The surface image of distributed Bragg reflector porous silicon indicates that the distributions of pores are even. The cross-sectional image illustrates that the multilayer of distributed Bragg reflector porous silicon exhibits a depth of few microns and applying of square current density during the etching process results two distinct refractive indices in the contrast. Distributed Bragg reflector porous silicon exhibited a porosity depth profile that related directly to the current-time profile used in etch. Its free-standing film was obtained by applying an electropolishing current.
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      Distributed Bragg reflector porous silicon of different characteristics were formed to determine their optical constants in the visible wavelength range using a periodic square wave current between low and high current densities. The surface and cross...

      Distributed Bragg reflector porous silicon of different characteristics were formed to determine their optical constants in the visible wavelength range using a periodic square wave current between low and high current densities. The surface and cross-sectional SEM images of distributed Bragg reflector porous silicon were obtained using a cold field emission scanning electron microscope. The surface image of distributed Bragg reflector porous silicon indicates that the distributions of pores are even. The cross-sectional image illustrates that the multilayer of distributed Bragg reflector porous silicon exhibits a depth of few microns and applying of square current density during the etching process results two distinct refractive indices in the contrast. Distributed Bragg reflector porous silicon exhibited a porosity depth profile that related directly to the current-time profile used in etch. Its free-standing film was obtained by applying an electropolishing current.

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      참고문헌 (Reference)

      1 S. H. Jang, "Study on thickness of porous silicon layer according to the various anodization times" 3 : 206-209, 2010

      2 S. D. Cho, "Preparation of polystyrene thin films containing Bragg structure and investigation of their photonic characteristics" 3 : 138-142, 2010

      3 J. M. Han, "Photoluminescence of porous silicon according to various etching times and various applied current densities" 3 (3): 148-152, 2010

      4 김성기, "Optical Characterization of Smart Dust Based on Photonic Crystals and Its Sensing Applications" 기초과학연구원 4 (4): 7-10, 2011

      5 이보연, "Multiple-Bit Encodings of Bragg Photonic-structures by Using Consecutive Etch with Various Square Wave Currents" 기초과학연구원 4 (4): 192-196, 2011

      6 Seunghyun Jang, "Investigation of the Changes of Fabry-Perot Fringe Patterns in Porous Silicon During Etching Process" 기초과학연구원 5 (5): 13-17, 2012

      7 김범석, "Investigation of Relationship between Reflection Resonance and Applied Current Density in Bragg Photonic Crystal" 기초과학연구원 5 (5): 27-31, 2012

      8 K. S. Jung, "Fabrication and characterization of DBR porous silicon chip for the detection of chemical nerve agents" 3 : 237-240, 2010

      9 M. W. Hwang, "Detection of organic vapors using change of Fabry-Perot fringe pattern of surface functionalized porous silicon" 3 : 168-173, 2010

      10 S. D. Cho, "Detection of nitroaromatic compounds with functionalized porous silicon using quenching photoluminescence" 3 : 202-205, 2010

      1 S. H. Jang, "Study on thickness of porous silicon layer according to the various anodization times" 3 : 206-209, 2010

      2 S. D. Cho, "Preparation of polystyrene thin films containing Bragg structure and investigation of their photonic characteristics" 3 : 138-142, 2010

      3 J. M. Han, "Photoluminescence of porous silicon according to various etching times and various applied current densities" 3 (3): 148-152, 2010

      4 김성기, "Optical Characterization of Smart Dust Based on Photonic Crystals and Its Sensing Applications" 기초과학연구원 4 (4): 7-10, 2011

      5 이보연, "Multiple-Bit Encodings of Bragg Photonic-structures by Using Consecutive Etch with Various Square Wave Currents" 기초과학연구원 4 (4): 192-196, 2011

      6 Seunghyun Jang, "Investigation of the Changes of Fabry-Perot Fringe Patterns in Porous Silicon During Etching Process" 기초과학연구원 5 (5): 13-17, 2012

      7 김범석, "Investigation of Relationship between Reflection Resonance and Applied Current Density in Bragg Photonic Crystal" 기초과학연구원 5 (5): 27-31, 2012

      8 K. S. Jung, "Fabrication and characterization of DBR porous silicon chip for the detection of chemical nerve agents" 3 : 237-240, 2010

      9 M. W. Hwang, "Detection of organic vapors using change of Fabry-Perot fringe pattern of surface functionalized porous silicon" 3 : 168-173, 2010

      10 S. D. Cho, "Detection of nitroaromatic compounds with functionalized porous silicon using quenching photoluminescence" 3 : 202-205, 2010

      11 이보연, "Chemical and Physical Properties of Porous Silicon" 기초과학연구원 4 (4): 187-191, 2011

      12 장승현, "Chemical and Physical Properties of Porous Silicon" 기초과학연구원 4 (4): 1-6, 2011

      13 이보연, "Characterization and Surface-Derivatization of Porous Silicon" 기초과학연구원 4 (4): 182-186, 2011

      14 D. H. Jung, "Biosensor based on distributed Bragg reflector photonic crystals for the detection of protein A" 3 : 33-37, 2010

      15 Y. D. Koh, "Analysis on oxidation of porous silica obtained from thermal oxidation of porous silicon" 3 : 153-156, 2010

      16 고영대, "1-D Photonic Crystals Based on Bragg Structure for Sensing and Drug Delivery Applications" 기초과학연구원 4 (4): 11-14, 2011

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2022 평가예정 신규평가 신청대상 (신규평가)
      2021-12-01 평가 등재후보 탈락 (계속평가)
      2020-12-01 평가 등재후보로 하락 (재인증) KCI등재후보
      2017-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2013-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2012-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2010-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.45 0.45 0.35
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.28 0.25 0.24 0.05
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