불소화 혹은 상용화제로 계면이 조절된 그래핀 나노플레이트를 함유하는 폴리프로필렌 복합재의 분산성 및 기계적 물성

이민규 2020년
논문상세정보
' 불소화 혹은 상용화제로 계면이 조절된 그래핀 나노플레이트를 함유하는 폴리프로필렌 복합재의 분산성 및 기계적 물성' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 화학공학과 관련공학
  • Composite
  • Dispersion
  • Graphene nanoplatelet
  • Mechanical properties
  • Polypropylene
  • interface
  • 계면
  • 그래핀
  • 기계적 성질
  • 나노복합재
  • 분산
  • 폴리프로필렌
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
2,491 0

0.0%

' 불소화 혹은 상용화제로 계면이 조절된 그래핀 나노플레이트를 함유하는 폴리프로필렌 복합재의 분산성 및 기계적 물성' 의 참고문헌

  • in Plastic technology handbook
    [2007]
  • in Hansen solubility parameter : a user ’ s handbook
    [2000]
  • [9] W. K.Chee, H. N. Lim, N. M. Huang, and I. Harrison, RSC Adv., 5, 6801468051 (2015).
    5 , 68014- 68051 [2015]
  • [90] J. G. Martínez-Colunga, S. Sanchez-Valdes, L. F. Ramos-deValle, O. Perez-Camacho, E. Ramirez-Vargas, R. Benavides-Cantú, C. A. Avila-Orta, V. J. Cruz-Delgado, J. M. Mata-Padilla, T. Lozano-Ramírez, and A. B. EspinozaMartínez, Polymer-Plastics Technol. Eng., 57, 1360-1366 (2017).
  • [8] X. Ji, Y. Xu, W. Zhang, L.Cui, and J. Liu,Compos. Part A: Appl. Sci. Manufacturing, 87, 29-45 (2016).
    87 , 29-45 [2016]
  • [89] M. Yi, Z. Shen, X. Zhang, and S. Ma, J. Phys. D: Appl. Phys., 46, 025301 (2013).
    46 , 025301 ( [2013]
  • [85] Y. Liang, D. Wu, X. Feng, and K. Müllen, Adv. Mater., 21, 1679-1683 (2009).
    21 , 1679-1683 ( [2009]
  • [84] S. Y. Jeong, S. H. Kim, J. T. Han, H. J. Jeong, S. Y. Jeong, and G.-W. Lee, Adv. Func. Mater., 22, 3307-3314 (2012).
    22 , 3307-3314 ( [2012]
  • [83] H. Gao, S. Zhang, F. Lu, H. Jia, and L. Zheng,Colloid and Polym. Sci., 290, 1785-1791 (2012).
    290 , 1785-1791 [2012]
  • [7] X. Xie, Y. Mai, and X. Zhou, Mater. Sci. Eng.: R: Reports, 49, 89-112 (2005).
    49 , 89-112 [2005]
  • [79] V.C. Tung, M. J. Allen, Y. Yang, and R. B. Kaner, Nat. Nanotechnol., 4, 25-9 (2009).
    4 , 25-9 ( [2009]
  • [78] L. Guardia, M. J. Fernández-Merino, J. I. Paredes, P. Solís-Fernández, S. Villar-Rodil, A. Martínez-Alonso, and J. M. D. Tascón, Carbon, 49, 1653-1662 (2011).
  • [77] D. Parviz, S. Das, H. S. T. Ahmed, F. Irin, S. Bhattacharia, and M. J. Green, ACS Nano, 6, 8857-8867 (2012).
    6 , 8857-8867 ( [2012]
  • [75] D. Parviz, F. Irin, S. A. Shah, S. Das,C. B. Sweeney, and M. J. Green, Adv. Mater., 28, 8796-8818 (2016).
    28 , 8796-8818 [2016]
  • [73] A. J. Crosby, and J. Y. Lee, Polym. Rev., 47, 217-229 (2007).
  • [72] X. L. Ji, J. K. Jing, W. Jing, and B. Z. Jiang, Polym. Eng. Sci., 42, 983-993 (2002).
    42 , 983-993 ( [2002]
  • [71] X. Zhao, Q. Zhang, D.Chen, and P. Lu, Macromolecules, 43, 2357-2363 (2010).
    43 , 2357-2363 [2010]
  • [70] A. J. Duguay, J. W. Nader, A. Kiziltas, D. J. Gardner, and H. J. Dagher, Appl. Nanosci., 4, 279-291 (2013).
  • [69] K. Kalaitzidou, H. Fukushima, and L. T. Drzal, Compos. Part A: Appl. Sci. Manufacturing, 38, 1675-1682 (2007).
  • [68] J.-E. An, G. W. Jeon, and Y. G. Jeong, Fibers and Polym., 13, 507-514 (2012).
    13 , 507-514 [2012]
  • [67] D. Li, and A. W. Neumann, J.Colloid and lnterface Sci., 148, 190-200 (1991).
    148 , 190-200 [1991]
  • [66] W.-W. Liu, B.-Y. Xia, X.-X. Wang, and J.-N. Wang, Front. Mater. Sci., 6, 176-182 (2012).
    6 , 176-182 [2012]
  • [65] L. J. van Rooyen, H. Bissett, M. C. Khoathane, and J. Karger-Kocsis, Carbon, 109, 30-39 (2016).
  • [64] M. Li, J. Shi,C.Chen, N. Li, Z. Xu, J. Li, H. Lv, X. Qian, and X. Jiao, J. Nanopart. Res., 19, 114 (2017).
    19 , 114 [2017]
  • [63] L. Xu, Y. Zheng, Z. Yan, W. Zhang, J. Shi, F. Zhou, X. Zhang, J. Wang, J. Zhang, and B. Liu, Appl. Surface Sci., 370, 201-208 (2016).
    370 , 201-208 [2016]
  • [62] B. Li, T. He, Z. Wang, Z.Cheng, Y. Liu, T.Chen, W. Lai, X. Wang, and X. Liu, Phys.Chem.Chem. Phys., 18, 17495-505 (2016).
    18 , 17495-505 [2016]
  • [61] X. Gao, and X. Tang,Carbon, 76, 133-140 (2014).
    76 , 133-140 [2014]
  • [60] K. Samanta, S. Some, Y. Kim, Y. Yoon, M. Min, S. M. Lee, Y. Park, and H. Lee,Chem.Commun. (Camb), 49, 8991-3 (2013).
    49 , 8991-3 ( [2013]
  • [5] D. R. Paul, and L. M. Robeson, Polymer, 49, 3187-3204 (2008).
  • [59] S. K. Yadav, J. H. Lee, H. Park, S. M. Hong, T. H. Han, andC. M. Koo, Bulletin of the KoreanChem. Soc., 35, 2139-2142 (2014).
    35 , 2139-2142 ( [2014]
  • [58] L. Pu, Y. Ma, W. Zhang, H. Hu, Y. Zhou, Q. Wang, andC. Pei, RSC Adv., 3, 3881-3884 (2013).
    3 , 3881-3884 ( [2013]
  • [57] Z. Wang, J. Wang, Z. Li, P. Gong, X. Liu, L. Zhang, J. Ren, H. Wang, and S. Yang,Carbon, 50, 5403-5410 (2012).
    50 , 5403-5410 [2012]
  • [56] X. Yang, X. Jia, and X. Ji, RSC Adv., 5, 9337-9340 (2015).
    5 , 9337-9340 [2015]
  • [55] F.-G. Zhao, G. Zhao, X.-H. Liu,C.-W. Ge, J.-T. Wang, B.-L. Li, Q.-G. Wang, W.-S. Li, and Q.-Y.Chen, J. Mater.Chem. A, 2, 8782-8789 (2014).
    2 , 8782-8789 ( [2014]
  • [53] F. Karlicky, K. K. R. Datta, M. Otyepak, and R. Zboril, ACS Nano, 8, 6434- 6464 (2013).
  • [52] J. O. Sofo, A. S. Chaudhari, and G. D. Barber, Phys. Rev. B, 75, 3845-3852 (2007).
  • [51] W. Feng, P. Long, Y. Feng, and Y. Li, Adv Sci (Weinh), 3, 1500413 (2016).
    3 , 1500413 [2016]
  • [50] D. D. Chronopoulos, A. Bakandritsos, M. Pykal, R. Zboril, and M. Otyepka, Appl. Mater. Today, 9, 60-70 (2017).
  • [4] S. N. Tripathi, G. S. S. Rao, A. B. Mathur, and R. Jasra, RSC Adv., 7, 2361523632 (2017).
    7 , 23615- 23632 ( [2017]
  • [49] J. U. Roh, S. W. Ma, W. I. Lee, H. Thomas Hahn, and D. W. Lee,Compos. Part B: Eng., 45, 1548-1553 (2013).
    45 , 1548-1553 ( [2013]
  • [48] V. Mittal, and L. Krauss,Colloid and Polym. Sci., 292, 2509-2518 (2014).
    292 , 2509-2518 [2014]
  • [47] A. U. Chaudhry, and V. Mittal, Polym. Eng. Sci., 53, 78-88 (2013).
  • [45] F. You, D. Wang, X. Li, M. Liu, G.-H. Hu, and Z.-M. Dang, RSC Adv., 4, 8799 (2014).
    4 , 8799 [2014]
  • [44] Y.Cao, J. Feng, and P. Wu,Carbon, 48, 1683-1685 (2010).
    48 , 1683-1685 ( [2010]
  • [43] F. Qiu, Y. Hao, X. Li, B. Wang, and M. Wang,Compos. Part B: Eng., 71, 175-183 (2015).
    71 , 175-183 [2015]
  • [42] N. Song, J. Yang, P. Ding, S. Tang, Y. Liu, and L. Shi, Ind. Eng.Chem. Res., 53, 19951-19960 (2014).
    53 , 19951-19960 [2014]
  • [41] X. Yang, X. Wang, J. Yang, J. Li, and L. Wan,Chem. Phys. Letters, 570, 125-131 (2013).
    570 , 125-131 [2013]
  • [40] Y. S. Yun, Y. H. Bae, D. H. Kim, J. Y. Lee, I.-J.Chin, and H.-J. Jin,Carbon, 49, 3553-3559 (2011).
    49 , 3553-3559 [2011]
  • [3] S. Parveen, S. Rana, and R. Fangueiro, J.Nanomater., 2013, 1-19 (2013).
  • [39] S. H. Ryu, and A. M. Shanmugharaj, Chemical Engineering Journal, 244, 552-560 (2014).
  • [37] P. Song, Z.Cao, Y.Cai, L. Zhao, Z. Fang, and S. Fu, Polymer, 52, 40014010 (2011).
    52 , 4001- 4010 [2011]
  • [36] V. Mittal, and A. U. Chaudhry, J. Appl. Polym. Sci., 132, 42484 (2015).
  • [35] R. S. Edwards, and K. S. Coleman, Nanoscale, 5, 38-51 (2013).
  • [34] H. Gholivand, N. Donmezer, Nanotechnology Materials and DevicesConference, in Institute of Electrical and Electronics Engineers (2016).
    [2016]
  • [33] J.Cho, I. Jeon, S. Y. Kim, S. Lim, and J. Y. Jho, ACS Appl. Mater. Interfaces, 9, 27984-27994 (2017).
    9 , 27984-27994 [2017]
  • [32] C. K. Chua, and M. Pumera, Chem. Asian. J., 7, 1009-12 (2012).
  • [31] S. H. Ryu, and A. M. Shanmugharaj, Mater. Chem. Phys., 146, 478-486 (2014).
  • [30] L. Gong, B. Yin, L.-p. Li, and M.-b. Yang,Compos. Part B: Eng., 73, 4956 (2015).
    73 , 49- 56 [2015]
  • [28] T. Kuilla, S. Bhadra, D. Yao, N. H. Kim, S. Bose, and J. H. Lee, Prog. Polym. Sci., 35, 1350-1375 (2010).
    35 , 1350-1375 ( [2010]
  • [25] R. J. Young, I. A. Kinloch, L. Gong, and K. S. Novoselov,Compos. Sci. Technol., 72, 1459-1476 (2012).
    72 , 1459-1476 [2012]
  • [24] J. Song, X. Wang, andC.-T.Chang, J. Nanomater., 2014, 1-6 (2014).
    01월 06일 [2014]
  • [22] K. Kalaitzidou, H. Fukushima, and L. T. Drzal, Compos. Sci. Technol., 67, 2045-2051 (2007).
  • [21] B. Li, and W.-H. Zhong, J. Mater. Sci., 46, 5595-5614 (2011).
    46 , 5595-5614 [2011]
  • [20] G. Mittal, V. Dhand, K. Y. Rhee, S.-J. Park, and W. R. Lee, J. Ind. Eng.Chem., 21, 11-25 (2015).
    21 , 11-25 ( [2015]
  • [1] J. K-Kocsis, Molecular structure of polypropylene homo- and copolymer, in Polypropylene structure, blends and composites, Chapman Hall, London (1995).
  • [19] X. Sun, H. Sun, H. Li, and H. Peng, Adv. Mater., 25, 5153-76 (2013).
    25 , 5153-76 ( [2013]
  • [18] J. Du, and H.-M.Cheng, Macromol.Chem. Phys., 213, 1060-1077 (2012).
    213 , 1060-1077 [2012]
  • [17] P. Mukhopadhyay, and R. K. Gupta, Plastics Eng., 67, 32-42 (2011).
    67 , 32-42 [2011]
  • [16] S. Dubin, S. Gilje, K. Wang, V.C. Tung, K.Cha, A. S. Hall, J. Farrar, R. Varshneya, Y. Yang, and R. B. Kaner, ACS Nano, 4, 3845 (2010).
    4 , 3845 ( [2010]
  • [15] L. Shahriary, and A. A. Athawale, Internat. J. Renewable Energy and Environmental Eng., 2, 58-63 (2014).
    2 , 58-63 ( [2014]
  • [14] O.C.Compton, and S. T. Nguyen, Small, 6, 711-23 (2010).
    6 , 711-23 [2010]
  • [11] M. J. Allen, V.C. Tung, and R. B. Kaner,Chem. Rev., 110, 132-145 (2010).
    110 , 132-145 [2010]
  • [10] K. S. Novoselov, V. I. Fal'ko, L.Colombo, P. R. Gellert, M. G. Schwab, and K. Kim, Nature, 490, 192-200 (2012).
    490 , 192-200 [2012]
  • W. J. Blau , and Y. K. Gun ’ ko
    44 , 1624- 1652 ( [2006]
  • T. McGovern , B. Holland , M. Byrne , Y. K. Gun'Ko , J. J. Boland , P. Niraj , G. Duesberg , S. Krishnamurthy , R. Goodhue , J. Hutchison , V. Scardaci
    and J. N. Coleman
  • S. Gilje , R. B. Kaner , and G. G. Wallace
    3 , 101-5 ( [2008]
  • S. D. Bergin , and J. N.Coleman
    26 , 3208-13 ( [2010]
  • R. Romero-Aburto , S. A. Mani , and P. M. Ajayan
    30 , 266-272 ( [2013]
  • L. C. Brinson , and J. M. Torkelson
    41 , 1905-1908 ( [2008]
  • J. Zemek , P. Jiricek , and I. Bieloshapka
    195 , 145-154 [2014]
  • J. C. Cabanelas , S. M. Vega-Díaz , and J. Baselga
    23 , 5302-5310 ( [2011]
  • I. T. McGovrn , G. S. Duesberg , and J. N. Coleman
    131 , 3611-3620 ( [2009]
  • G. E. Luckachan , and N. B. Matsko
    215 , 255-268 ( [2014]
  • D. H. Adamson , and H. C. Schniepp ,
    22 [2012]
  • B. Lauke , and Y.-W. Mai
    39 , 933-961 ( [2008]
  • B. Harack , M. Hilke , A. Horth , N. Majlis , M. Massicotte , L. Vandsburger , E. Whiteway , and V. Yu
  • A. N. Basuray , K. J. Hartlieb , T. Aytun , S. I. Stupp , and J. F. Stoddart
    25 , 2740-5 ( [2013]
  • A. Abdala , and C. W. Macosko
    43 , 6515- 6530 [2010]
  • 27 ] D. G. Papageorgiou , I . A. Kinloch , and R. J . Young
    22 , 2694-7 (90 , 75-127 ( [2010]
  • 119.Yoo, S., Kim, J., Ryu, K., 2014. Using Big Data strategy for the development of the communication industry. In International Conference on Web-Age Information Management (pp. 349-359). Springer, Cham.