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      KCI등재 SCOPUS SCIE

      Weak Coordination Bond of Chloromethane: A Unique Way to Activate Metal Node Within an Unstable Metal–Organic Framework DUT-34

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      https://www.riss.kr/link?id=A107379656

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      다국어 초록 (Multilingual Abstract)

      Activation of metal nodes in metal–organic frameworks (MOFs) has been viewed as an essential step prior to their use for various potential applications. So far, a thermal method has been most commonly employed for the activation despite its negative...

      Activation of metal nodes in metal–organic frameworks (MOFs) has been viewed as an essential step prior to their use for various potential applications. So far, a thermal method has been most commonly employed for the activation despite its negative influence on the structural integrity of MOFs. Meanwhile, DUT-34 has been considered as an ideal platform for the above applications due to its open-metal sites (OMSs) at the Cu node. However, the activation of DUT-34 has not been successful because of its fragile characteristics. In this article, we report the coordination-chemistry-controlled activation, namely chemical route activation, using chloromethanes. By monitoring the coordination exchangeability of chloromethanes, we demonstrate that the chloromethanes can weakly coordinate at the OMSs. Further, we demonstrate that this coordination exchange is a safe activation method to retain the framework structure of DUT-34, based on the observation that the DUT-34 placed in TCM remained intact over 2 months.

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      참고문헌 (Reference)

      1 B. Li, 28 : 8819-, 2016

      2 T. D. Bennett, 3 : 431-, 2018

      3 C. Prestipino, 18 : 1337-, 2006

      4 N. Klein, 17 : 13007-, 2011

      5 H. Furukawa, 50 : 9147-, 2011

      6 W. -Y. Gao, 27 : 2144-, 2015

      7 N. C. Burtch, 114 : 10575-, 2014

      8 H. I. Song, 124 : 13187-, 2020

      9 E. J. Lee, 11 : 35155-, 2019

      10 J. S. Choi, 57 : 5225-, 2018

      1 B. Li, 28 : 8819-, 2016

      2 T. D. Bennett, 3 : 431-, 2018

      3 C. Prestipino, 18 : 1337-, 2006

      4 N. Klein, 17 : 13007-, 2011

      5 H. Furukawa, 50 : 9147-, 2011

      6 W. -Y. Gao, 27 : 2144-, 2015

      7 N. C. Burtch, 114 : 10575-, 2014

      8 H. I. Song, 124 : 13187-, 2020

      9 E. J. Lee, 11 : 35155-, 2019

      10 J. S. Choi, 57 : 5225-, 2018

      11 Z. Chen, 368 : 297-, 2020

      12 H. Furukawa, 341 : 1230444-, 2013

      13 J. Hou, 142 : 3880-, 2020

      14 Q. -G. Zhai, 50 : 407-, 2017

      15 R. Cao, 12 : 47747-, 2020

      16 Y. -Z. Li, 12 : 41785-, 2020

      17 B. Liang, 142 : 17795-, 2020

      18 Q. Ma, 59 : 21909-, 2020

      19 B. J. Riley, 12 : 45342-, 2020

      20 J. Yan, 10 : 26618-, 2018

      21 Z. R. Herm, 340 : 960-, 2013

      22 S. Begum, 52 : 1598-, 2019

      23 E. S. Grape, 142 : 16795-, 2020

      24 Q. Wang, 10 : 37600-, 2020

      25 D. Yu, 255 : 120160-, 2020

      26 S. Yuvaraja, 12 : 18748-, 2020

      27 M. A. Andrés, 12 : 4155-, 2020

      28 S. Okur, 59 : 1-, 2020

      29 T. Zhou, 12 : 48948-, 2020

      30 M. B. Nguyen, 10 : 42212-, 2020

      31 L. Gao, 19 : 4990-, 2019

      32 J. Luo, 58 : 15313-, 2019

      33 Y. Xia, 12 : 22930-, 2020

      34 Q. Zhang, 30 : 2004854-, 2020

      35 T. Chen, 142 : 12367-, 2020

      36 A. J. Clough, 141 : 16323-, 2019

      37 H. Ji, 8 : 32414-, 2016

      38 L. Wang, 137 : 4920-, 2015

      39 Y. Zhou, 59 : 18763-, 2020

      40 Y. -C. Chen, 11 : 35319-, 2019

      41 X. Niu, 56 : 11338-, 2020

      42 P. Perlepe, 370 : 587-, 2020

      43 K. P. Bera, 12 : 36485-, 2020

      44 C. Zhang, 59 : 2-, 2020

      45 J. H. Cavka, 130 : 13850-, 2008

      46 G. Mouchaham, 54 : 13297-, 2015

      47 P. Deria, 137 : 13183-, 2015

      48 P. Li, 138 : 8052-, 2016

      49 G. L. Liu, 140 : 6231-, 2018

      50 T. Rhauderwiek, 9 : 5467-, 2018

      51 D. Song, 141 : 7853-, 2019

      52 H. K. Kim, 137 : 10009-, 2015

      53 J. Bae, 9 : 24743-, 2017

      54 J. Bae, 54 : 6458-, 2018

      55 Jong Hyeon Lee, "Synthesis, Structure, and Proton Conductivities of a Mg(II)-based Coordination Polymer Composed of an Exotic Oxidized Ligand" 대한화학회 42 (42): 322-325, 2021

      56 김성준, "Study of the Dye Adsorption Kinetics of Metal–Organic Frameworks in Aqueous Media" 대한화학회 41 (41): 843-850, 2020

      57 이주연, "Strategies in Metal–Organic Framework-based Catalysts for the Aerobic Oxidation of Alcohols and Recent Progress" 대한화학회 42 (42): 359-368, 2021

      58 Sukbin Yoon, "Photophysical Properties and Electrochromism of Viologen Encapsulated Viologen@InBTB Metal–Organic Framework" 대한화학회 42 (42): 326-332, 2021

      59 J. E. Huheey, "Inorganic Chemistry:Principles of Structure and Reactivity" HarperCollins College Publishers 555-, 1993

      60 Soonsang Hong, "Hierarchical Porous Carbon Materials Prepared by Direct Carbonization of Metal–Organic Frameworks as an Electrode Material for Supercapacitors" 대한화학회 42 (42): 309-314, 2021

      61 Hyug Hee Han, "Facile Cu(I) Loading for Adsorptive C3H6/C3H8 Separation Through Double Cu(II) Salts Incorporation Within Pores With Unsaturated Fe(II) Sites" 대한화학회 42 (42): 471-476, 2021

      62 윤석민, "Charge Transport Pathways of π-Conjugated Metal–Organic Frameworks" 대한화학회 41 (41): 592-594, 2020

      63 노의진, "CO2/N2 and O2/N2 Separation Using Mixed-Matrix Membranes with MOF-74 Nanocrystals Synthesized Via Microwave Reactions" 대한화학회 42 (42): 459-462, 2021

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2008-01-01 평가 SCI 등재 (기타) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2001-07-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      1998-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.58 0.11 0.38
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.28 0.23 0.213 0.04
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