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[해외논문] Assessment of mechanical performance, thermal stability and water resistance of novel conductive poly(lactic acid)/modified natural rubber blends with low loading of polyaniline

Polymer international, v.67 no.8, 2018년, pp.1070 - 1080  

Shahdan, Dalila (Material Science Programme, School of Applied Physics, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Malaysia) ,  Chen, Ruey S (Material Science Programme, School of Applied Physics, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Malaysia) ,  Ahmad, Sahrim (Material Science Programme, School of Applied Physics, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Malaysia) ,  Zailan, Farrah D (Material Science Programme, School of Applied Physics, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Malaysia) ,  Mat Ali, Adilah (Material Science Programme, School of Applied Physics, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Malaysia)

Abstract AI-Helper 아이콘AI-Helper

ABSTRACTBiodegradable conductive polymer blends made from poly(lactic acid) (PLA), liquid natural rubber (LNR) and polyaniline (PANI) were prepared via a melt‐blending technique assisted by ultrasonic treatment. The effects of PANI at low loading (0.03 to 0.11 wt%) on the electrical conductivi...

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참고문헌 (60)

  1. Babu VJ , Vempati S and Ramakrishna S , Mater Sci Appl 4 : 10 ( 2013 ). 

  2. Molapo KM , Ndangili PM , Ajayi RF , Mbambisa G , Mailu SM , Njomo N et al ., Int J Electrochem Sci 7 : 11859 – 11875 ( 2012 ). 

  3. Supri AG and Heah CY , J Phys Sci 21 : 81 – 97 ( 2010 ). 

  4. Laska J , Zak K and Proń A , Synth Met 84 : 117 – 118 ( 1997 ). 

  5. Kazimi MR , Shah T , Jamari SB and CKM F , J Med Bioeng 3 : 306 – 310 ( 2014 ). 

  6. Rahman NA , Easteal AJ and Travas‐Sejdic J , Mater Sci Forum 700 : 137 – 140 ( 2012 ). 

  7. Picciani PHS , Medeiros ES , Pan Z , Wood DF , Orts WJ , Mattoso LHC et al ., Macromol Mater Eng 295 : 618 – 627 ( 2010 ). 

  8. Chen B‐K , Shih C‐C and Chen AF , Composites A 43 : 2289 – 2295 ( 2012 ). 

  9. Bhatia A , Gupta R , Bhattacharya S and Choi H , Korea‐Aust Rheol J 19 : 125 – 131 ( 2007 ). 

  10. Lopes MS , Jardini AL and Filho RM , Chem Eng Trans 38 : 331 – 336 ( 2014 ). 

  11. Murariu M , Bonnaud L , Yoann P , Fontaine G , Bourbigot S and Dubois P , Polym Degrad Stab 95 : 374 – 381 ( 2010 ). 

  12. Cao X , Mohamed A , Gordon SH , Willett JL and Sessa DJ , Thermochim Acta 406 : 115 – 127 ( 2003 ). 

  13. Peng S , Zhu P , Wu Y , Mhaisalkar SG and Ramakrishna S , RSC Adv 2 : 652 – 657 ( 2012 ). 

  14. Ploypetchara N , Suppakul P , Atong D and Pechyen C , Energy Procedia 56 : 201 – 210 ( 2014 ). 

  15. Balakrishnan H , Hassan A , Wahit MU , Yussuf AA and Razak SBA , Mater Des 31 : 3289 – 3298 ( 2010 ). 

  16. Frone AN , Berlioz S , Chailan J‐F and Panaitescu DM , Carbohydr Polym 91 : 377 – 384 ( 2013 ). 

  17. Shahdan D , Ahmad SH and Flaifel MH , AIP Conf Proc 1571 : 75 – 82 ( 2013 ). 

  18. Lisman Suryanegara ANN and Yano H , Compos Sci Technol 69 : 1187 – 1192 ( 2009 ). 

  19. Bijarimi M , Ahmad S and Rasid R , J Elastomers Plast 46 : 338 – 354 ( 2014 ). 

  20. Bijarimi M , Ahmad S and Rasid R , J Reinf Plast Compos 32 : 1656 – 1667 ( 2013 ). 

  21. Juntuek P , Ruksakulpiwat C , Chumsamrong P and Ruksakulpiwat Y , Adv Mater Res 123‐125 : 1167 – 1170 ( 2010 ). 

  22. Hassan MSZMDA and Arsad A , Adv Mater Res 747 : 639 – 642 ( 2013 ). 

  23. Ali AM and Ahmad SH , AIP Conf Proc 1528 : 254 – 259 ( 2013 ). 

  24. Jaratrotkamhorn R , Khaokong C and Tanrattanakul V , J Appl Polym Sci 124 : 5027 – 5036 ( 2012 ). 

  25. Ibrahim A and Dahlan M , Prog Polym Sci 23 : 665 – 706 ( 1998 ). 

  26. Ali AM and Ahmad SH , Adv Mater Res 1133 : 481 – 485 ( 2016 ). 

  27. Tarawneh MA , Shahdan D and Ahmad SH , J Nanomater 2013 : 5 ( 2013 ). 

  28. Picciani PHS , Medeiros ES , Pan Z , Orts WJ , Mattoso LHC and Soares BG , J Appl Polym Sci 112 : 744 – 753 ( 2009 ). 

  29. Dong H , Nyame V , MacDiarmid AG and Jones WE Jr , J Polym Sci B 42 : 3934 – 3942 ( 2004 ). 

  30. Patra SN , Bhattacharyya D , Ray S and Easteal AJ , IOP Conf Ser Mater Sci Eng 4 : 012020 ( 2009 ). 

  31. Picciani PHS , Medeiros , E. S. , Mattoso , LHC and Soares , BG . LNLS 2009 Activity Report ( 2009 ). 

  32. Tarawneh MA , Ahmad SHJ , Zarina KAK , Hassan IN , Jiun YL , Flaifel MH et al ., Sains Malaysiana 42 : 503 – 507 ( 2013 ). 

  33. Tarawneh MA , Ahmad SH , EhNoum S and Lau K , J Compos Mater 47 : 579 – 585 ( 2012 ). 

  34. Singh S and Ray SS , J Nanosci Nanotechnol 7 : 2596 – 2615 ( 2007 ). 

  35. Prabhakaran MP , Venugopal J and Ramakrishna S , Acta Biomater 5 : 2884 – 2893 ( 2009 ). 

  36. Kumar R , Oves M , Ameelbi T , Al‐Makishah NH and Barakat MA , J Colloid Interface Sci 490 : 488 – 496 ( 2016 ). 

  37. Wang J and Zhang D , Adv Polym Technol 32 : E323 – E368 ( 2013 ). 

  38. Balakrishnan H , Hassan A , Imran M and Wahit MU , J Polym Environ 19 : 863 – 875 ( 2011 ). 

  39. Matveeva ES , Diaz Calleja R and Parkhutik VP , Synth Met 72 : 105 – 110 ( 1995 ). 

  40. Yew GH , Mohd Yusof AM , Mohd Ishak ZA and Ishiaku US , Polym Degrad Stab 90 : 488 – 500 ( 2005 ). 

  41. Alix A , Lemoine V , Nechtschein M , Travers JP and Menardo C , Synth Met 29 : 457 – 462 ( 1989 ). 

  42. Chow WS and Lok SK , J Therm Anal Calorim 95 : 627 – 632 ( 2009 ). 

  43. Juntuek P , Ruksakulpiwat C , Chumsamrong P and Ruksakulpiwat Y , Adv Mater Res 410 : 59 – 62 ( 2012 ). 

  44. Laska J , J Mol Struct 701 : 13 – 18 ( 2004 ). 

  45. Li C‐Y , Chiu W‐Y and Don T‐M , J Polym Sci A: Polym Chem 45 : 3902 – 3911 ( 2007 ). 

  46. Li M , Guo Y , Wei Y , AG MD and Lelkesa PI , Biomaterials 27 : 2705 – 2715 ( 2006 ). 

  47. Soundararajah QY , Karunaratne BSB and Rajapakse RMG , Mater Chem Phys 113 : 850 – 855 ( 2009 ). 

  48. Araujo JR , Adamo CB and De Paoli M‐A , Chem Eng J 174 : 425 – 431 ( 2011 ). 

  49. Bitinis N , Verdejo R , Maya EM , Espuche E , Cassagnau P and Lopez‐Manchado MA , Compos Sci Technol 72 : 305 – 313 ( 2012 ). 

  50. Kumar V , Yokozeki T , Goto T and Takahashi T , J Reinf Plast Compos 34 : 1298 – 1305 ( 2015 ). 

  51. Chen RS , Ab Ghani MH , Ahmad S , Salleh MN and Tarawneh M'A , J Compos Mater 49 : 1241 – 1253 ( 2015 ). 

  52. Kaur G , Adhikari R , Cass P , Bown M and Gunatillake P , RSC Adv 5 : 37553 – 37567 ( 2015 ). 

  53. Abdul Rahman N , Gizdavic‐Nikolaidis M , Ray S , Easteal AJ and Travas‐Sejdic J , Synth Met 160 : 2015 – 2022 ( 2010 ). 

  54. Pavia DL , Lampman GM and Kriz GS , Introduction to Spectroscopy: A Guide for Students of Organic Chemistry . Harcourt College Publishers , Philadelphia ( 2001 ). 

  55. Lee H‐Y , Rwei S‐P , Wang L and Chen PH , Mater Chem Phys 112 : 805 – 809 ( 2008 ). 

  56. Ali AM , Ahmad SH and Tarawneh MA , Malaysian J Anal Sci 20 : 1084 – 1089 ( 2016 ). 

  57. Abbas SJ , Rani M and Tripathi SK , Phys B: Condens Matter 443 : 107 – 113 ( 2014 ). 

  58. Vudjung C , Chaisuwan U , Pangan U , Chaipugdee N , Boonyod S , Santawitee O et al ., Energy Procedia 56 : 255 – 263 ( 2014 ). 

  59. Tham WL , Poh BT , Ishak ZAM and Chow WS , J Eng Sci 12 : 13 ( 2016 ). 

  60. Osman MJ , Ibrahim NA , Sharif J and WanYunus WMZ , ChemXpress 5 : 66 – 72 ( 2014 ). 

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