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      KCI등재 SCOPUS SCIE

      Fabrication of spherical CNT skeins formed by self-entangled fibers from hollow type mesoporous silica microcapsules

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      https://www.riss.kr/link?id=A106441457

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      다국어 초록 (Multilingual Abstract)

      Various type CNT balls were fabricated using porous hollow microcapsules, and they were characterizedby XRD, TEM and N2 adsorption/desorption analysis. The CNT Balls tangled together showed extremelyimproved thermal and electrical properties as compared to thefibrous CNTs. Notably increased strainvalues, such as more than 30% strains atfixed stress, with high toughness have resulted in for thoseentangled CNT skeins. Even though the CNT skeins entangled together withfibrous bundles have beenfabricated as a multi wall-type, they could be applied successfully as a DNA separator and highlyconducting electrochemical/rheological materials.
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      Various type CNT balls were fabricated using porous hollow microcapsules, and they were characterizedby XRD, TEM and N2 adsorption/desorption analysis. The CNT Balls tangled together showed extremelyimproved thermal and electrical properties as compar...

      Various type CNT balls were fabricated using porous hollow microcapsules, and they were characterizedby XRD, TEM and N2 adsorption/desorption analysis. The CNT Balls tangled together showed extremelyimproved thermal and electrical properties as compared to thefibrous CNTs. Notably increased strainvalues, such as more than 30% strains atfixed stress, with high toughness have resulted in for thoseentangled CNT skeins. Even though the CNT skeins entangled together withfibrous bundles have beenfabricated as a multi wall-type, they could be applied successfully as a DNA separator and highlyconducting electrochemical/rheological materials.

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      참고문헌 (Reference)

      1 D. Gittins, 13 : 740-, 2003

      2 Sangjin Han, "The effect of silica template structure on the pore structure of mesoporous carbons" Elsevier BV 41 (41): 1049-1056, 2003

      3 A.B. Fuertes, "Templated mesoporous carbons for supercapacitor application" Elsevier BV 50 (50): 2799-2805, 2005

      4 Yong-Suk Kim, "Synthesis of hollow microcapsules using SBA-15 sol and their evaluation as a photocatalyst in the decomposition of methyleneblue" Elsevier BV 71 (71): 616-619, 2010

      5 Yong-Suk Kim, "Synthesis of carbon monolith with bimodal meso/macroscopic pore structure and its application in asymmetric catalysis" Elsevier BV 150 (150): 91-99, 2010

      6 Xiao-Feng Guo, "Synthesis of Ordered Mesoporous Manganese Oxides by Double Replication for Use as an Electrode Material" 대한화학회 32 (32): 186-190, 2011

      7 Xiao-Feng Guo, "Synthesis of Mesoporous Metal Oxides and Their Efficient Property for Super Capacitor Application" American Scientific Publishers 11 (11): 1672-1675, 2011

      8 V SUBRAMANIAN, "Synthesis and electrochemical characterizations of amorphous manganese oxide and single walled carbon nanotube composites as supercapacitor electrode materials" Elsevier BV 8 (8): 827-832, 2006

      9 Minsuk Kim, "Synthesis and characterization of spherical carbon and polymer capsules with hollow macroporous core and mesoporous shell structures" Elsevier BV 63 (63): 1-9, 2003

      10 K. H. An, "Supercapacitors Using Single-Walled Carbon Nanotube Electrodes" Wiley 13 (13): 497-500, 2001

      1 D. Gittins, 13 : 740-, 2003

      2 Sangjin Han, "The effect of silica template structure on the pore structure of mesoporous carbons" Elsevier BV 41 (41): 1049-1056, 2003

      3 A.B. Fuertes, "Templated mesoporous carbons for supercapacitor application" Elsevier BV 50 (50): 2799-2805, 2005

      4 Yong-Suk Kim, "Synthesis of hollow microcapsules using SBA-15 sol and their evaluation as a photocatalyst in the decomposition of methyleneblue" Elsevier BV 71 (71): 616-619, 2010

      5 Yong-Suk Kim, "Synthesis of carbon monolith with bimodal meso/macroscopic pore structure and its application in asymmetric catalysis" Elsevier BV 150 (150): 91-99, 2010

      6 Xiao-Feng Guo, "Synthesis of Ordered Mesoporous Manganese Oxides by Double Replication for Use as an Electrode Material" 대한화학회 32 (32): 186-190, 2011

      7 Xiao-Feng Guo, "Synthesis of Mesoporous Metal Oxides and Their Efficient Property for Super Capacitor Application" American Scientific Publishers 11 (11): 1672-1675, 2011

      8 V SUBRAMANIAN, "Synthesis and electrochemical characterizations of amorphous manganese oxide and single walled carbon nanotube composites as supercapacitor electrode materials" Elsevier BV 8 (8): 827-832, 2006

      9 Minsuk Kim, "Synthesis and characterization of spherical carbon and polymer capsules with hollow macroporous core and mesoporous shell structures" Elsevier BV 63 (63): 1-9, 2003

      10 K. H. An, "Supercapacitors Using Single-Walled Carbon Nanotube Electrodes" Wiley 13 (13): 497-500, 2001

      11 A. Peigney, "Specific surface area of carbon nanotubes and bundles of carbon nanotubes" Elsevier BV 39 (39): 507-514, 2001

      12 Yuanzhe Piao, "Sea urchin shaped carbon nanostructured materials: carbon nanotubes immobilized on hollow carbon spheres" Royal Society of Chemistry (RSC) 16 (16): 2984-, 2006

      13 J. Lee, "Recent Progress in the Synthesis of Porous Carbon Materials" Wiley 18 (18): 2073-2094, 2006

      14 Zhen Fan, "Preparation and characterization of manganese oxide/CNT composites as supercapacitive materials" Elsevier BV 15 (15): 1478-1483, 2006

      15 E. Raymundo-Piñero, "Performance of Manganese Oxide/CNTs Composites as Electrode Materials for Electrochemical Capacitors" The Electrochemical Society 152 (152): A229-, 2005

      16 Jong-Sung Yu, "Ordered uniform porous carbon by carbonization of sugars" Elsevier BV 39 (39): 1442-1446, 2001

      17 Gui-Xin Wang, "Manganese oxide/MWNTs composite electrodes for supercapacitors" Elsevier BV 176 (176): 1169-1174, 2005

      18 Xiao-Feng Guo, "Hydrogenation of chiral nitrile on highly ordered mesoporous carbon-supported Pd catalysts" Elsevier BV 150 (150): 22-27, 2010

      19 Li, "Hollow Spheres of Mesoporous Aluminosilicate with a Three-Dimensional Pore Network and Extraordinarily High Hydrothermal Stability" American Chemical Society (ACS) 3 (3): 609-612, 2003

      20 Hisashi Tamai, "Highly Mesoporous Carbon Electrodes for Electric Double-Layer Capacitors" The Electrochemical Society 6 (6): A214-, 2003

      21 Noriyuki Hida, "Helical, Chiral Polyisocyanides Bearing Ferrocenyl Groups as Pendants: Synthesis and Properties" Wiley 42 (42): 4349-4352, 2003

      22 X. D. Wang, "Fabrication of hollow zeolite spheres" Royal Society of Chemistry (RSC) (21) : 2161-2162, 2000

      23 Xiao-Feng Guo, "Fabrication of SiO 2 , Al 2 O 3 , and TiO 2 Microcapsules with Hollow Core and Mesoporous Shell Structure" American Chemical Society (ACS) 113 (113): 8313-8319, 2009

      24 Sung Dae Choi, "Fabrication of Metal Nanowires via Replica Casting Using Mesoporous Silica as a Mold and Their Catalytic Application in Hydrogenation" American Scientific Publishers 5 (5): 44-49, 2017

      25 Sang Gweon Jeon, "Fabrication of Mesoporous Hollow TiO2 Microcapsules for Application as a DNA Separator" 대한화학회 35 (35): 3583-3589, 2014

      26 Sang-Wook Kim, "Fabrication of Hollow Palladium Spheres and Their Successful Application to the Recyclable Heterogeneous Catalyst for Suzuki Coupling Reactions" American Chemical Society (ACS) 124 (124): 7642-7643, 2002

      27 장다영, "Fabrication of Hollow Metal Microcapsules with Mesoporous Shell Structure: Application as Efficient Catalysts Recyclable by Simple Magnetic Separation" 대한화학회 32 (32): 3274-3280, 2011

      28 S.B. Yoon, "Fabrication of Carbon Capsules with Hollow Macroporous Core/Mesoporous Shell Structures" Wiley 14 (14): 19-21, 2002

      29 최성대, "Fabrication of CNT/CMK3 Carbon Composites with High Electrical/Thermal Conductive Properties" 대한화학회 34 (34): 2155-2161, 2013

      30 Geon J. Kim, "Fabrication and application of highly ordered mesoporous Co3O4, NiO, and their metals" Elsevier BV 71 (71): 612-615, 2010

      31 M. Miranda-Hernández, "Electrochemical storage of hydrogen in nanocarbon materials: electrochemical characterization of carbon black matrices" Springer Science and Business Media LLC 7 (7): 264-270, 2003

      32 Jang Myoun Ko, "Electrochemical properties of MnO2/activated carbon nanotube composite as an electrode material for supercapacitor" Elsevier BV 114 (114): 837-841, 2009

      33 K. H. An, "Electrochemical Properties of High-Power Supercapacitors Using Single-Walled Carbon Nanotube Electrodes" Wiley 11 (11): 387-392, 2001

      34 Joseph N. Barisci, "Electrochemical Characterization of Single-Walled Carbon Nanotube Electrodes" The Electrochemical Society 147 (147): 4580-, 2000

      35 Songhun Yoon, "Electric Double-Layer Capacitor Performance of a New Mesoporous Carbon" The Electrochemical Society 147 (147): 2507-, 2000

      36 Yoshio Yamada, "Electric Double Layer Capacitance Performance of Porous Carbons Prepared by Defluorination of Polytetrafluoroethylene with Potassium" The Electrochemical Society 5 (5): A283-, 2002

      37 Ting Gao, "Chemiresistors for Array-Based Vapor Sensing Using Composites of Carbon Black with Low Volatility Organic Molecules" American Chemical Society (ACS) 18 (18): 5193-5202, 2006

      38 M. Zhu, "Chemical and electrochemical ageing of carbon materials used in supercapacitor electrodes" Elsevier BV 46 (46): 1829-1840, 2008

      39 Christine A. Frysz, "Carbon filaments and carbon black as a conductive additive to the manganese dioxide cathode of a lithium electrolytic cell" Elsevier BV 58 (58): 41-54, 1996

      40 P. Jiang, "A Lost-Wax Approach to Monodisperse Colloids and Their Crystals" American Association for the Advancement of Science (AAAS) 291 (291): 453-457, 2001

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