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    KCI등재 SCOPUS SCIE

    Urtica dioica extract as a facile green reductant of graphene oxide for UV resistant and corrosion protective polyurethane coating fabrication

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    https://www.riss.kr/link?id=A106441376

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Reduction of graphene oxide still is one of discussion subjects in scientific communities. The use of toxicchemicals like hydrazine is a well-known procedure for graphene oxide reduction. In this paper, a newecofriendly, fully scalable, and cheap approach with easy procedure on industrial scale for producingreduced graphene oxide is introduced. The studied method was based on successful reduction ofgraphene oxide by urtica dioica leaves’ extract in 1 h at 90 C. Raman spectroscopy evidenced thesignificant removal of considerable oxygen functional groups in graphene oxide after reduction.
    Improving corrosion properties by helping the functionalization ability of u. dioica leaves’ extract forsuperior dispersion in polyurethane coatings was studied as well. Electrochemical impedancespectroscopy measurements along with salt spray exposure test revealed the remarkable role ofresultant reduced graphene oxide in protective function of polyurethane coatings before and afteraccelerated weathering condition. Impedance value in low frequency diagrams reveals more than 99%protection efficiency indicating the great role of u. dioica in barrier property of PU coatings afteraccelerated weathering condition.
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    Reduction of graphene oxide still is one of discussion subjects in scientific communities. The use of toxicchemicals like hydrazine is a well-known procedure for graphene oxide reduction. In this paper, a newecofriendly, fully scalable, and cheap appr...

    Reduction of graphene oxide still is one of discussion subjects in scientific communities. The use of toxicchemicals like hydrazine is a well-known procedure for graphene oxide reduction. In this paper, a newecofriendly, fully scalable, and cheap approach with easy procedure on industrial scale for producingreduced graphene oxide is introduced. The studied method was based on successful reduction ofgraphene oxide by urtica dioica leaves’ extract in 1 h at 90 C. Raman spectroscopy evidenced thesignificant removal of considerable oxygen functional groups in graphene oxide after reduction.
    Improving corrosion properties by helping the functionalization ability of u. dioica leaves’ extract forsuperior dispersion in polyurethane coatings was studied as well. Electrochemical impedancespectroscopy measurements along with salt spray exposure test revealed the remarkable role ofresultant reduced graphene oxide in protective function of polyurethane coatings before and afteraccelerated weathering condition. Impedance value in low frequency diagrams reveals more than 99%protection efficiency indicating the great role of u. dioica in barrier property of PU coatings afteraccelerated weathering condition.

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    참고문헌 (Reference)

    1 P. Murkute, 25 : 2878-, 2016

    2 M. Cui, 335 : 255-, 2018

    3 L. O. Olasunkanmi, 76 : 109-, 2016

    4 S. K. Saha, 5 : 71120-, 2015

    5 Y. Zhao, 17 : 5653-, 2017

    6 T. H. Lee, 570 : 23-, 2019

    7 C. Liu, 10 : 1250-, 2017

    8 M. A. Osman, 36 : 9851-, 2003

    9 D. C. Marcano, 4 : 4806-, 2010

    10 S. Neyshtadt, 7 : 6675-, 2015

    1 P. Murkute, 25 : 2878-, 2016

    2 M. Cui, 335 : 255-, 2018

    3 L. O. Olasunkanmi, 76 : 109-, 2016

    4 S. K. Saha, 5 : 71120-, 2015

    5 Y. Zhao, 17 : 5653-, 2017

    6 T. H. Lee, 570 : 23-, 2019

    7 C. Liu, 10 : 1250-, 2017

    8 M. A. Osman, 36 : 9851-, 2003

    9 D. C. Marcano, 4 : 4806-, 2010

    10 S. Neyshtadt, 7 : 6675-, 2015

    11 M. Mahdiani, 176 : 1185-, 2018

    12 S. Schöche, 421 : 778-, 2017

    13 B. Yuan, 237 : 411-, 2014

    14 Y. -J. Wan, 69 : 467-, 2014

    15 M. V. Fiori-Bimbi, 92 : 192-, 2015

    16 Y. -C. Kong, 231 : 51-, 2018

    17 H. Safardoust-Hojaghan, 148 : 31-, 2017

    18 D. Chen, 112 : 6027-, 2012

    19 U. Boro, 104 : 180-, 2017

    20 B. Chen, 5 : 30464-, 2015

    21 S. Pourhashem, 111 : 47-, 2017

    22 K. S. Aneja, 1 : 11-, 2017

    23 B. Ramezanzadeh, 121 : 20433-, 2017

    24 M. Mahdavian, 447 : 135-, 2018

    25 H. -L. Guo, 3 : 2653-, 2009

    26 J. Zhang, 46 : 1112-, 2010

    27 C. K. Chua, 43 : 291-, 2014

    28 X. Gao, 114 : 832-, 2009

    29 M. Agharkar, 59 : 323-, 2014

    30 X. Weng, 359 : 976-, 2019

    31 K. K. H. De Silva, 447 : 338-, 2018

    32 X. Jin, 208 : 417-, 2018

    33 D. Hou, 183 : 76-, 2016

    34 J. Guil-Guerrero, 16 : 111-, 2003

    35 K. Jakubczyk, 61 : 191-, 2015

    36 Y. F. Kopyt’Ko, 45 : 622-, 2012

    37 M. Ramezanzadeh, 256 : 67-, 2018

    38 M. Hasani, 116 : 90-, 2018

    39 M. J. Fernández-Merino, 50 : 3184-, 2012

    40 R. Arsat, 467 : 344-, 2009

    41 M. Mahmudzadeh, 2019

    42 C. K. Chua, 52 : 72-, 2016

    43 M. J. Ferna’ndez-Merino, 114 : 6426-, 2010

    44 S. Amrollahi, 173 : 106804-, 2019

    45 D. V. Stergiou, 12 : 1307-, 2010

    46 Y. Wang, 3 : 1127-, 2011

    47 M. Ramezanzadeh, 337 : 385-, 2018

    48 W. Gao, "The chemistry of graphene oxide" Springer 61-, 2015

    49 S. Kumari, "Synthesis of Graphene by Reduction of Graphene Oxide Using Non-Toxic Chemical Reductant" Springer 143-, 2019

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
    2011-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2009-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2007-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2004-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2003-01-01 등재 등재후보 1차 PASS (등재후보1차) KCI등재후보
    2001-07-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    학술지 인용정보

    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 3.4 0.75 2.84
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    2.39 2.24 0.397 0.56
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