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      KCI등재 SCIE SCOPUS

      Flame Retardant Composite Foam Modified by Silylated Nanocellulose and Tris(2-chloropropyl) Phosphate

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      https://www.riss.kr/link?id=A106442205

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      다국어 초록 (Multilingual Abstract)

      Improving flame retardancy is one of the most crucial issues to use polymeric materials for building construction.
      Most of the flame retardant materials containing halogen atoms delay fire spread, but produce harmful gases duringcombustion. Hence, we designed and fabricated a composite foam by using a green nanomaterial. Silylated andnanofibrillated cellulose (Si-NFC) was added to polyurethane foam (PUF) containing tris(2-chloropropyl) phosphate (TCPP)in order to reduce the emission of smoke during combustion. Thermal characteristics of the composite foams wereinvestigated through thermogravimetric analysis, limiting oxygen index (LOI), and cone calorimeter tests. The LOI of the Si-NFC embedded composite was increased from 19.3 % to 24.6 %. In addition, the Si-NFC led to an improvement in thethermal stability of the composites by reducing the peak release of heat and smoke. Chemical structure of the residual charwas analyzed by using energy-dispersive X-ray spectroscopy and Fourier transform infrared spectroscopy.
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      Improving flame retardancy is one of the most crucial issues to use polymeric materials for building construction. Most of the flame retardant materials containing halogen atoms delay fire spread, but produce harmful gases duringcombustion. Hence, we...

      Improving flame retardancy is one of the most crucial issues to use polymeric materials for building construction.
      Most of the flame retardant materials containing halogen atoms delay fire spread, but produce harmful gases duringcombustion. Hence, we designed and fabricated a composite foam by using a green nanomaterial. Silylated andnanofibrillated cellulose (Si-NFC) was added to polyurethane foam (PUF) containing tris(2-chloropropyl) phosphate (TCPP)in order to reduce the emission of smoke during combustion. Thermal characteristics of the composite foams wereinvestigated through thermogravimetric analysis, limiting oxygen index (LOI), and cone calorimeter tests. The LOI of the Si-NFC embedded composite was increased from 19.3 % to 24.6 %. In addition, the Si-NFC led to an improvement in thethermal stability of the composites by reducing the peak release of heat and smoke. Chemical structure of the residual charwas analyzed by using energy-dispersive X-ray spectroscopy and Fourier transform infrared spectroscopy.

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      참고문헌 (Reference)

      1 H. -B. Zhao, 5 : 7012-, 2017

      2 H. Ding, 62 : 325-, 2017

      3 R. Gomez-Rojo, 11 : 359-, 2019

      4 J. H. Park, 406 : 224-, 2017

      5 X. Liu, 160 : 168-, 2019

      6 Y. -J. Chen, 84 : 142-, 2019

      7 A. Liu, 49 : 940-, 2013

      8 G. Shan, 18 : 2196-, 2017

      9 M. Tokumura, 169 : 464-, 2019

      10 M. Ba, 18 : 907-, 2017

      1 H. -B. Zhao, 5 : 7012-, 2017

      2 H. Ding, 62 : 325-, 2017

      3 R. Gomez-Rojo, 11 : 359-, 2019

      4 J. H. Park, 406 : 224-, 2017

      5 X. Liu, 160 : 168-, 2019

      6 Y. -J. Chen, 84 : 142-, 2019

      7 A. Liu, 49 : 940-, 2013

      8 G. Shan, 18 : 2196-, 2017

      9 M. Tokumura, 169 : 464-, 2019

      10 M. Ba, 18 : 907-, 2017

      11 S. Gutiérrez-González, 28 : 653-, 2012

      12 X. Liu, 304 : 1800531-, 2018

      13 W. Xi, 11 : 207-, 2019

      14 X. Liu, 119 : 291-, 2019

      15 W. Guo, 26 : 1247-, 2018

      16 J. J. Cheng, 40 : E1006-, 2018

      17 D. Xu, 144 : 207-, 2017

      18 J. Guo, 26 : 19-, 2019

      19 N. T. Cervin, 14 : 503-, 2013

      20 M. Obori, 11 : 024044-, 2019

      21 A. Baidya, 11 : 11091-, 2017

      22 H. Soeta, 7 : 11041-, 2015

      23 T. Jayaramudu, 156 : 43-, 2019

      24 H. Kim, 29 : 455702-, 2018

      25 J. M. Silva, 168 : 428-, 2019

      26 M. Santiago-Calvo, 136 : 47474-, 2019

      27 S. Alasti Bonab, 172 : 27-, 2019

      28 X. Ji, 370 : 1341-, 2019

      29 Z. -J. Cao, 361 : 1245-, 2019

      30 Y. Chen, 147 : 107-, 2019

      31 S. Zhang, 66 : 188-, 2007

      32 L. Liao, 55 : 11689-, 2016

      33 B. Zhao, 124 : 247-, 2017

      34 X. Chen, 100 : 186-, 2013

      35 B. Zhao, 160 : 82-, 2019

      36 Shiping Wang, "Preparation of fluorescent thermoplastic polyurethane microcellular foam films blown by supercritical CO2" SAGE Publications 55 (55): 483-505, 2019

      37 Chaoyun Luo, "Preparation and Properties of Halogen-Free Flame Retardant and High Refractive Index Optical Resin via Click Chemistry" 한국고분자학회 26 (26): 346-352, 2018

      38 Jacek Lubczak, "Polyurethane Foams with 1,3,5-Triazine Ring and Silicon Atoms" 한국고분자학회 27 (27): 543-550, 2019

      39 Alisa Šehić, "Influence of N-, P- and Si-based Flame Retardant Mixtures on Flammability, Thermal Behavior and Mechanical Properties of PA6 Composite Fibers" 한국섬유공학회 19 (19): 1194-1206, 2018

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      공동연구자 (7)

      유사연구자 (20) 활용도상위20명

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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
      2013-10-01 평가 SCOPUS 등재 (등재유지) KCI등재
      2011-01-01 평가 등재후보학술지 유지 (기타) KCI등재후보
      2003-01-01 평가 SCIE 등재 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0 0 0
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0 0 0 0
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