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김영관 (Young-Kwan Kim) 저자 이메일 보기
서울대학교
 
조회 2713  인쇄하기 주소복사 트위터 공유 페이스북 공유 
Biomedical Applications of Graphene and Graphene Oxide

Chul Chung, Young-Kwan Kim, Dolly Shin , Soo-Ryoon Ryoo , Byung Hee Hong *, and Dal-Hee Min *
 
Department of Chemistry, College of Natural Sciences, Seoul National University, Seoul, Korea

*To whom correspondence should be addressed. Byung Hee Hong, Dal-Hee Min

C.C. and Y.-K.K. contributed equally to this work.

Abstract
Graphene has unique mechanical, electronic, and optical properties, which researchers have used to develop novel electronic materials including transparent conductors and ultrafast transistors. Recently, the understanding of various chemical properties of graphene has facilitated its application in high-performance devices that generate and store energy. Graphene is now expanding its territory beyond electronic and chemical applications toward biomedical areas such as precise biosensing through graphene-quenched fluorescence, graphene-enhanced cell differentiation and growth, and graphene-assisted laser desorption/ionization for mass spectrometry. In this Account, we review recent efforts to apply graphene and graphene oxides (GO) to biomedical research and a few different approaches to prepare graphene materials designed for biomedical applications.

Because of its excellent aqueous processability, amphiphilicity, surface functionalizability, surface enhanced Raman scattering (SERS), and fluorescence quenching ability, GO chemically exfoliated from oxidized graphite is considered a promising material for biological applications. In addition, the hydrophobicity and flexibility of large-area graphene synthesized by chemical vapor deposition (CVD) allow this material to play an important role in cell growth and differentiation.

The lack of acceptable classification standards of graphene derivatives based on chemical and physical properties has hindered the biological application of graphene derivatives. The development of an efficient graphene-based biosensor requires stable biofunctionalization of graphene derivatives under physiological conditions with minimal loss of their unique properties. For the development graphene-based therapeutics, researchers will need to build on the standardization of graphene derivatives and study the biofunctionalization of graphene to clearly understand how cells respond to exposure to graphene derivatives. Although several challenging issues remain, initial promising results in these areas point toward significant potential for graphene derivatives in biomedical research.

논문정보
- 형식: Review Paper
- 게재일: 2013년 03월 (BRIC 등록일 2013-03-13)
- 연구진: 국내연구진태극기
순환종양세포(circulating tumor cell)의 단일세포 분석 (single-cell analysis)[PNAS]
임수빈
발표: 임수빈 (National University of S...)
일자: 2019년 11월 27일 (수) 오후 03시 (한국시간)
언어: 영어
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Google (by Young-Kwan Kim)
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[재직자 무료교육 11/28~29] 분석기기(HPLC)활용 품질검사 실습
[재직자 무료교육 11/28~29] 분석기기(HPLC)활용 품질검사 실습
날짜: 2019.11.28~29
장소: 청주시 흥덕구 오송읍 오송생명1로 194-41 기업연구1관 충북산학융합본부
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(유전자치료제 관련_식약처) 2019년 제2회 NIFDS-PMDA 공동 워크숍
사전접수: ~2019.11.23
날짜: 2019.11.28
장소: 호텔프리마(강남구)
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