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Fabrication of Nanorod Shaped TiO2 Using Engineered Bacteriophage

첫 페이지 보기
  • 발행기관
    한국생물공학회 바로가기
  • 간행물
    한국생물공학회 학술대회 바로가기
  • 통권
    2012 춘계학술대회 및 국제심포지움 (2012.04)바로가기
  • 페이지
    pp.269-269
  • 저자
    Ji-ryang JANG, Young Jun KIM, Chang-Hoon NAM, Woo-Seok CHOE
  • 언어
    영어(ENG)
  • URL
    https://www.earticle.net/Article/A174897

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원문정보

초록

영어
One-dimensional (1D) nanostructured materials in nanorod form have attracted many attentions due to their unique properties derived from low dimensionality and quantum confinement effect. Many nanorod shaped metal oxide materials have been synthesized using various procedures including a biomimetic method called biomineralization. Among various metal oxides, titanium oxide (TiO2) is stable and harmless to environment, finding its useful applications in many areas including photocatalysts, sensors, memory devices and solar cells. In the present study, we demonstrate the synthesis of nanorod shaped TiO2 using a bacteriophage as a template to guide 1D TiO2 nucleation and subsequent growth along the virus axis. To render this virus-mediated biomineralization of the nanorod shaped TiO2, a genetically engineered phage (f88-STB1) was constructed by genetically fusing TiO2 affinity peptide STB1 (CHKKPSKSC)[1] to a major viral coat protein (pVIII) of the wild-type virus f88. Following confirmation of STB1- fused pVIII expression on the f88-STB1 in approximately 150 copy numbers, it was shown that the f88-STB1 exhibited specific and electrostatic binding affinity to TiO2 at pH 9 where indigenous but nonspecific affinity of the wild-type virus to TiO2 was found abolished almost completely. Since affinity of biomolecules toward TiO2 is necessary for biomineralization, nanorod shaped TiO2 synthesis at pH 9 was enabled only when the reaction was catalyzed by the engineered phages. Furthermore, reaction conditions (e.g. pH, ionic strength, concentrations of viruses and precursors) were found to affect significantly the efficiency of the virus mediated TiO2 biomineralization. Finally, nanorod shaped TiO2 produced in this study was analyzed by SEM, TEM, EDS and XRD to compare its characteristics with the conventional TiO2 in particle form.

키워드

Titanium dioxide Biomineralization Bacteriophage Biocatalyst 1D nanostructure

저자

  • Ji-ryang JANG [ SKKU Advanced Institute of Nanotechnology (SAINT), Sungkyunkwan University, Suwon, 440-746. ]
  • Young Jun KIM [ Human Biotechnology, KIST-Europe, Saarbruecken, 66123, Germany. ]
  • Chang-Hoon NAM [ Human Biotechnology, KIST-Europe, Saarbruecken, 66123, Germany. ]
  • Woo-Seok CHOE [ SKKU Advanced Institute of Nanotechnology (SAINT), Sungkyunkwan University, Suwon, 440-746. ]

참고문헌

자료제공 : 네이버학술정보

간행물 정보

발행기관

  • 발행기관명
    한국생물공학회 [The Korean Society for Biotechnology and Bioengineering]
  • 설립연도
    1984
  • 분야
    공학>생물공학
  • 소개
    이 법인은 생물 공학의 발전과 보급에 이바지하고, 회원 상호 간의 연구 협력과 친목을 도모함을 목적으로 한다 1. 생물공학 분야의 발전을 위한 연구 협력 2. 생물공학의 실용화를 촉진시키기 위한 산학 협동 3. 학술연구 발표회, 강연회, 연수회 등 학술활동의 개최 4. 국,영문 학술지,소식지,학술회의 Proceedings 및 학술도서의 발간 5. 생물공학 발전을 위한 정책 건의 6. 기타 국제 교류 등 본 학회의 목적 달성을 위한 제반 활동

간행물

  • 간행물명
    한국생물공학회 학술대회
  • 간기
    반년간
  • 수록기간
    1985~2013
  • 십진분류
    KDC 476 DDC 576

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