TY - JOUR
T1 - Ultralow dielectric, fluoride-containing cyanate ester resins with improved mechanical properties and high thermal and dimensional stabilities
AU - Gu, Junwei
AU - Dong, Wencai
AU - Tang, Yusheng
AU - Guo, Yongqiang
AU - Tang, Lin
AU - Kong, Jie
AU - Tadakamalla, Sruthi
AU - Wang, Bin
AU - Guo, Zhanhu
N1 - Publisher Copyright:
© 2017 The Royal Society of Chemistry.
PY - 2017
Y1 - 2017
N2 - In this contribution, we present a new strategy for the fabrication of modified cyanate ester resins combined with ultralow dielectric properties, improved mechanical properties and high thermal and dimensional stabilities. The fluoride-containing compound 2-((3-(trifluoromethyl)phenoxy)methyl)oxirane (TFMPMO), synthesized from m-(trifluoromethyl)phenol (TFMP) and epichlorohydrin (ECH), was used to modify bisphenol A dicyanate ester (BADCy) resins via copolymerization reaction. The BADCy resin modified with 15 wt% TFMPMO presented ultralow dielectric constant (ϵ, 2.75) and dielectric loss tangent values (tan δ, 6.7 × 10-3), high mechanical properties (impact strength of 15.4 kJ m-2 and flexural strength of 141.0 MPa), and superior thermal and dimensional stability (THeat-resistance index of 206 °C and coefficient of thermal expansion of 6.4 × 10-5), and it possesses great potential application in radomes and antenna systems of aircraft.
AB - In this contribution, we present a new strategy for the fabrication of modified cyanate ester resins combined with ultralow dielectric properties, improved mechanical properties and high thermal and dimensional stabilities. The fluoride-containing compound 2-((3-(trifluoromethyl)phenoxy)methyl)oxirane (TFMPMO), synthesized from m-(trifluoromethyl)phenol (TFMP) and epichlorohydrin (ECH), was used to modify bisphenol A dicyanate ester (BADCy) resins via copolymerization reaction. The BADCy resin modified with 15 wt% TFMPMO presented ultralow dielectric constant (ϵ, 2.75) and dielectric loss tangent values (tan δ, 6.7 × 10-3), high mechanical properties (impact strength of 15.4 kJ m-2 and flexural strength of 141.0 MPa), and superior thermal and dimensional stability (THeat-resistance index of 206 °C and coefficient of thermal expansion of 6.4 × 10-5), and it possesses great potential application in radomes and antenna systems of aircraft.
UR - https://www.scopus.com/pages/publications/85025144014
U2 - 10.1039/c7tc00222j
DO - 10.1039/c7tc00222j
M3 - 文章
AN - SCOPUS:85025144014
SN - 2050-7534
VL - 5
SP - 6929
EP - 6936
JO - Journal of Materials Chemistry C
JF - Journal of Materials Chemistry C
IS - 28
ER -