RISS 학술연구정보서비스

검색
다국어 입력

http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.

변환된 중국어를 복사하여 사용하시면 됩니다.

예시)
  • 中文 을 입력하시려면 zhongwen을 입력하시고 space를누르시면됩니다.
  • 北京 을 입력하시려면 beijing을 입력하시고 space를 누르시면 됩니다.
닫기
    인기검색어 순위 펼치기

    RISS 인기검색어

      KCI등재 SCOPUS SCIE

      The Changes of Absorption and Catalytic Capacity on Reduced Graphene Oxide After Electron Beam Irradiation

      한글로보기

      https://www.riss.kr/link?id=A103768703

      • 0

        상세조회
      • 0

        다운로드
      서지정보 열기
      • 내보내기
      • 내책장담기
      • 공유하기
      • 오류접수

      부가정보

      다국어 초록 (Multilingual Abstract)

      As is well-known, porous nanomaterials have attracted increasing attention recently, and graphene-related materials (such as porous graphene) have been studied both experimentally and theoretically. Almost all researches are focused on nanoelectronics, supercapacitors, multifunctional membrances, bio-applications or others. Consequently, in order to understand the differences between porous graphene and normal graphene at adsorption and catalytic property, in this experiment, with the removal of metal ion (152Eu(III)) and organic matter (gallic acid) and reduction of 4-nitrophenol (4-NP) by NaBH4 as model reactions, a systematic investigation into the adsorptive performance as well as catalytic activity of graphene with or without electron beam irradiation exposure had been carried out. As the results showed, compared with the reduction of pristine graphene oxidized (R-GO), the reduction of graphene oxidized with electron beam irradiation exposure (100 MGy, about 2 h, radiation graphene oxide (R-RGO)) had many irregular defects caused by lack of atoms; the adsorptive performance of the R-RGO increased for metals but decreased for organic matter. However, the adsorption rate of the R-RGO was lower for metals, but higher for organic matter than that of the R-GO. In addition, the results also showed that the R-RGO had a better catalytic capacity than the R-GO.
      번역하기

      As is well-known, porous nanomaterials have attracted increasing attention recently, and graphene-related materials (such as porous graphene) have been studied both experimentally and theoretically. Almost all researches are focused on nanoelectronics...

      As is well-known, porous nanomaterials have attracted increasing attention recently, and graphene-related materials (such as porous graphene) have been studied both experimentally and theoretically. Almost all researches are focused on nanoelectronics, supercapacitors, multifunctional membrances, bio-applications or others. Consequently, in order to understand the differences between porous graphene and normal graphene at adsorption and catalytic property, in this experiment, with the removal of metal ion (152Eu(III)) and organic matter (gallic acid) and reduction of 4-nitrophenol (4-NP) by NaBH4 as model reactions, a systematic investigation into the adsorptive performance as well as catalytic activity of graphene with or without electron beam irradiation exposure had been carried out. As the results showed, compared with the reduction of pristine graphene oxidized (R-GO), the reduction of graphene oxidized with electron beam irradiation exposure (100 MGy, about 2 h, radiation graphene oxide (R-RGO)) had many irregular defects caused by lack of atoms; the adsorptive performance of the R-RGO increased for metals but decreased for organic matter. However, the adsorption rate of the R-RGO was lower for metals, but higher for organic matter than that of the R-GO. In addition, the results also showed that the R-RGO had a better catalytic capacity than the R-GO.

      더보기

      참고문헌 (Reference)

      1 K. S. Novoselov, 306 : 666-, 2004

      2 D.-E. Jiang, 126 : 134701-, 2007

      3 A. Gupta, 6 : 2667-, 2006

      4 M. C. Lemme, 28 : 282-, 2007

      5 A. K. Geim, 6 : 183-, 2007

      6 K. S. Kim, 457 : 706-, 2009

      7 R. S. Ruoff, 4 : 217-, 2010

      8 I. Childres, 97 : 173109-, 2010

      9 M. F. Craciun, 25 : 423201-, 2013

      10 Y. Zhu, 22 : 3906-, 2010

      1 K. S. Novoselov, 306 : 666-, 2004

      2 D.-E. Jiang, 126 : 134701-, 2007

      3 A. Gupta, 6 : 2667-, 2006

      4 M. C. Lemme, 28 : 282-, 2007

      5 A. K. Geim, 6 : 183-, 2007

      6 K. S. Kim, 457 : 706-, 2009

      7 R. S. Ruoff, 4 : 217-, 2010

      8 I. Childres, 97 : 173109-, 2010

      9 M. F. Craciun, 25 : 423201-, 2013

      10 Y. Zhu, 22 : 3906-, 2010

      11 S. Guo, 40 : 2644-, 2011

      12 G. Williams, 2 : 1487-, 2008

      13 A. Du, 132 : 2876-, 2010

      14 S. Blankenburg, 6 : 2266-, 2010

      15 D.-E. Jiang, 9 : 4019-, 2009

      16 T. Premkumar, 37 : 515-, 2012

      17 G. F. Schneider, 10 : 3163-, 2010

      18 M. D. Halls, 2013 : 105029-, 2013

      19 A. P. Caryl, 54 : 25-, 2003

      20 F. Withers, 11 : 3912-, 2011

      21 W. S. Hummers, 80 : 1339-, 1958

      22 S. Park, 4 : 217-, 2009

      23 F. Avil es, 47 : 2970-, 2009

      24 C. Lu, 151 : 239-, 2008

      25 A. Ferrari, 97 : 187401-, 2006

      26 C. J. Russo, 109 : 5953-, 2012

      27 S. Stankovich, 45 : 1558-, 2007

      28 Z. Guo, 76 : 203-, 2014

      29 Y.-S. Ho, 70 : 115-, 1998

      30 B. Kuchta, 11 : 293-, 2005

      31 J. Zhang, 25 : 269-, 2008

      32 M. Machida, 44 : 2681-, 2006

      33 G. Ramesha, 361 : 270-, 2011

      34 J. Wang, 8 : e72475-, 2013

      35 Y. Gao, 47 : 2432-, 2011

      36 H. Sun, 4 : 5466-, 2012

      37 C. N. R. Rao, 2010 : 4244-, 2010

      38 C. N. R. Rao, 52 : 13162-, 2013

      39 S. Bai, 60 : 157-, 2013

      40 K. Nakada, 54 : 17954-, 1996

      41 C. N. R. Rao, "Graphene" Wiley-VCH 438-, 2013

      더보기

      동일학술지(권/호) 다른 논문

      동일학술지 더보기

      더보기

      분석정보

      View

      상세정보조회

      0

      Usage

      원문다운로드

      0

      대출신청

      0

      복사신청

      0

      EDDS신청

      0

      동일 주제 내 활용도 TOP

      더보기

      주제

      연도별 연구동향

      연도별 활용동향

      연관논문

      연구자 네트워크맵

      공동연구자 (7)

      유사연구자 (20) 활용도상위20명

      인용정보 인용지수 설명보기

      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2021 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-12-01 평가 등재 탈락 (해외등재 학술지 평가)
      2013-10-01 평가 등재학술지 선정 (기타) KCI등재
      2008-01-01 평가 SCIE 등재 (신규평가) KCI등재후보
      더보기

      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.63 0.14 0.51
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.45 0.39 0.176 0.05
      더보기

      이 자료와 함께 이용한 RISS 자료

      나만을 위한 추천자료

      해외이동버튼