유기된 변위전류의 2차 전이특성

Secondary Transition Characteristics of Induced Displacement Current

  • 김성진 (동신대학교 대학원 전기전자공학과) ;
  • 장헌 (동신대학교 대학원 전기전자공학과) ;
  • 김영근 (광주보건대학 방사선과) ;
  • 최영일 (조선이공대학 전자과) ;
  • 구할본 (전남대학교 공과대학 전기공학과) ;
  • 정헌상 (조선대학교 공과대학 전기공학과) ;
  • 이경섭 (동신대학교 공과대학 전기전자공학부)
  • Kim, Sung-Jin (Dept of Electrical and Electronic Eng. Dongshin University grad.) ;
  • Chang, Hun (Dept of Electrical and Electronic Eng. Dongshin University grad.) ;
  • Kim, Young-Heun (Dept. of Radiotechnology, Kwang-Ju Health College) ;
  • Choi, Young-I1 (Dept. of Electronics. Chosun College of Science & Technology) ;
  • Gu, Hal-Bon (Dept. of Electrical Eng. Chonnam University) ;
  • Chung, Hun-Sang (Dept. of Electrical Eng. Chosun University) ;
  • Lee, Kyung-Sup (Dept of Electrical & Electronic Eng. Dongshin University)
  • 발행 : 2000.07.17

초록

In this paper with deposition 8A5H induce monolayers which has photoisomerization response displacement current was detected by photoisomerization and the amplifier was designed in order to amplify detected displacement current and then secondary current characteristic was measured. The experimental results are as following: In case of ultraviolet(${\lambda}_1$) and visible(${\lambda}_2$) irradiation on 8A5H induce monolayers depositioned on board the peak of current was detected about 9[fA]. Displacement current amplified as secondary transition form was measured but there was any particular reaction for detailed and accurate measurement restruction of the circuit is required.

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