Synthesis and studies of the physical properties of polyaniline and polyurethane-modified epoxy composites

被引:22
作者
Chiou, Wen-Chin [1 ]
Han, Jin-Lin [2 ]
Lee, Sung-Nung [1 ]
机构
[1] Fu Jen Catholic Univ, Dept Chem, Taipei, Taiwan
[2] Natl Univ I Lan, Dept Chem & Mat Engn, Ilan, Taiwan
关键词
D O I
10.1002/pen.20944
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Two series of toughened, semiconductive polyaniline (PANI)/polyurethane (PU)-epoxy (PANI/PU-EPOXY) nanocomposites were prepared using a conductive polymer, PANI, and PU prepolymer-modified-diglycidyl ether of bisphenol A (DGEBA) epoxy. First, the PU prepolymer-modified epoxy oligomer was synthesized by a stoichiometric reaction between the terminal isocyanate groups of the PU prepolymer and the pendent hydroxyl groups of the epoxide. PU prepolymers were made either of polyester (polybutylene adipate, PBA) or polyether (polypropylene glycol, PPG) segments. The composites were characterized by thermal, morphological, mechanical, and electrical studies. Impact strength was enhanced 100% in PU (PPG 2000)-modified composites; whereas, only ca. 30-50% increases in impact strength were observed for the other modified composites. In addition, the thermal stability of this composite proved superior to that of neat epoxy resin, regardless of a PU content at 27.5 wt%. Scanning electron microscopy (SEM) morphology study showed that the spherical PU (PPG 2000) particles (ca. 0.2-0.5 pm) dispersed within the matrix accounts for these extraordinary properties. The conductivity of the composite increased to ca. 10(-9) - 10(-3) S cm(-1) upon addition of PANI when tested in the frequency range 1 kHz-13 MHz. This study demonstrated a useful way to simultaneously improve the toughness and conductivity of the epoxy composite, thus rendering it suitable for electromagnetic interference and various charge dissipation applications. POLYM. ENG. SCI., 48:345-354, 2008. (c) 2007 Society of Plastics Engineers.
引用
收藏
页码:345 / 354
页数:10
相关论文
共 26 条
[1]  
[Anonymous], POLYURETHANE BOOK
[2]  
BASCOM WD, 1989, RUBBER TOUGHENED PLA, V222
[3]   EFFECT OF MATRIX DUCTILITY ON THE FRACTURE-BEHAVIOR OF RUBBER-TOUGHENED EPOXY-RESINS [J].
CHEN, TK ;
JAN, YH .
POLYMER ENGINEERING AND SCIENCE, 1995, 35 (09) :778-785
[4]   Synthesis and characterization of composites of polyaniline and polyurethane-modified epoxy [J].
Chiou, Wen-Chin ;
Yang, Doung-Yi ;
Han, Jin-Lin ;
Lee, Sung-Nung .
POLYMER INTERNATIONAL, 2006, 55 (11) :1222-1229
[5]   Synthesis and characterization of high dielectric constant polyaniline/polyurethane blends [J].
Chwang, CP ;
Liu, CD ;
Huang, SW ;
Chao, DY ;
Lee, SN .
SYNTHETIC METALS, 2004, 142 (1-3) :275-281
[6]   Thin films of polyaniline-polyacrylic acid composite by chemical bath deposition [J].
Hu, HL ;
Saniger, JM ;
Bañuelos, JG .
THIN SOLID FILMS, 1999, 347 (1-2) :241-247
[7]   COUNTERION INDUCED PROCESSIBILITY OF POLYANILINE - CONDUCTING MELT PROCESSIBLE POLYMER BLENDS [J].
IKKALA, OT ;
LAAKSO, J ;
VAKIPARTA, K ;
VIRTANEN, E ;
RUOHONEN, H ;
JARVINEN, H ;
TAKA, T ;
PASSINIEMI, P ;
OSTERHOLM, JE ;
CAO, Y ;
ANDREATTA, A ;
SMITH, P ;
HEEGER, AJ .
SYNTHETIC METALS, 1995, 69 (1-3) :97-100
[8]  
Jeevananda T, 1999, J APPL POLYM SCI, V74, P3507
[9]   Inhibition of steel corrosion by polyaniline coatings [J].
Kraljic, M ;
Mandic, Z ;
Duic, L .
CORROSION SCIENCE, 2003, 45 (01) :181-198
[10]   High dielectric constant polyaniline/epoxy composites via in situ polymerization for embedded capacitor applications [J].
Lu, Jiongxin ;
Moon, Kyoung-Sik ;
Kim, Byung-Kook ;
Wong, C. P. .
POLYMER, 2007, 48 (06) :1510-1516