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Published in: Journal of Polymer Research 6/2011

01-11-2011 | Original Paper

Liquid crystalline epoxy resin modified cyanate ester for high performance electronic packaging

Authors: Xiaoyan Zhang, Aijuan Gu, Guozheng Liang, Dongxian Zhuo, Li Yuan

Published in: Journal of Polymer Research | Issue 6/2011

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Abstract

A high performance modified cyanate ester (CE) resin system with significantly improved toughness, water resistance and dimensional stability was developed by copolymerizing CE resin with liquid crystalline epoxy resin (LCE) for electronic packaging. Four LCE/CE resins with different contents of LCE were prepared to systemically evaluate the effect of the content of LCE on the key properties of the modified system such as mechanical, dielectric and thermal properties as well as water resistance. Results reveal that the addition of LCE to CE can not only decrease the curing temperature of CE, but also significantly improve the integrated properties including mechanical and dielectric properties, thermal resistance as well as water resistance of cured resin. For example, compared with the whole exothermic peak of CE, that of LCE10/CE significantly shifts toward low temperature with a gap of about 15°C. On the other hand, the impact strength of cured LCE10/CE resin (22 kJ/m2) is about 2.1 times of that of CE resin; while the water absorption of the former is only 81.2% of that of the latter. In addition, cured LCE/CE resins also exhibit lower and more stable dielectric loss than CE resin over the whole frequency range from 10 to 106 Hz. All these improvements in macro-performance by the addition of LCE to CE resin are not only ascribed to the cross-linked chemical structure, but also attributed to the rigid structure of liquid crystalline resin. The outstanding integrated properties of LCE/CE resins suggest great potential to be applied in the field of high performance electronic packaging.

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Literature
1.
go back to reference Brownlee K, Raj PM, Bhattacharya Sk, Shinotani K, Wong CP, Tummala RR (2002) Evaluation of Liquid Crystal Polymers for High Performance SOP Applications in ‘52nd Electronic Components and Technology Conference San Diego, USA, 16: 676-680 Brownlee K, Raj PM, Bhattacharya Sk, Shinotani K, Wong CP, Tummala RR (2002) Evaluation of Liquid Crystal Polymers for High Performance SOP Applications in ‘52nd Electronic Components and Technology Conference San Diego, USA, 16: 676-680
2.
go back to reference Guo Y (2004) Handbook of Moire measurement. Chemical, Beijing Guo Y (2004) Handbook of Moire measurement. Chemical, Beijing
3.
go back to reference Ling W, Gu AJ, Liang GZ, Yuan L, Liu J (2010) Polym Adv Technol 21:365–370 Ling W, Gu AJ, Liang GZ, Yuan L, Liu J (2010) Polym Adv Technol 21:365–370
4.
go back to reference Snow AW, Buckley LJ (1999) In: Nalwa H (ed) Handbook of low and high dielectric constant materials and their applications, 2nd edn. Academic, San Diego Snow AW, Buckley LJ (1999) In: Nalwa H (ed) Handbook of low and high dielectric constant materials and their applications, 2nd edn. Academic, San Diego
5.
go back to reference Badrinarayanan P, Mac Murray B, Kessler MR (2009) J Mater Res 24:2235–2242CrossRef Badrinarayanan P, Mac Murray B, Kessler MR (2009) J Mater Res 24:2235–2242CrossRef
6.
go back to reference Hamerton I, Howlin BJ, Klewpatinond P, Takeda S (2009) Macromolecules 42:7718–7735CrossRef Hamerton I, Howlin BJ, Klewpatinond P, Takeda S (2009) Macromolecules 42:7718–7735CrossRef
7.
go back to reference Wooster TJ, Abrol S, Hey JM, MacFarlane DR (2004) Composites Part A 35:75–82CrossRef Wooster TJ, Abrol S, Hey JM, MacFarlane DR (2004) Composites Part A 35:75–82CrossRef
8.
12.
go back to reference Zhan GZ, Yu YF, Tang XL, Tao QS, Li SJ (2006) J Polym Sci Part B: Polym PhysH 44:517–523CrossRef Zhan GZ, Yu YF, Tang XL, Tao QS, Li SJ (2006) J Polym Sci Part B: Polym PhysH 44:517–523CrossRef
13.
14.
go back to reference Yang CZ, Gu AJ, Song HW, Xu ZB, Fang ZP, Tong LF (2007) J Appl Polym Sci 105:2020–2026CrossRef Yang CZ, Gu AJ, Song HW, Xu ZB, Fang ZP, Tong LF (2007) J Appl Polym Sci 105:2020–2026CrossRef
15.
17.
go back to reference Liu GL, Zhou B, Zhao DM, Li Q, Gao JG (2008) Macromol Chem Phys 209:1160–1169CrossRef Liu GL, Zhou B, Zhao DM, Li Q, Gao JG (2008) Macromol Chem Phys 209:1160–1169CrossRef
20.
22.
go back to reference Braun D, Cherdron H, Kern W, Huan B (1981) Translation, Techniques of Polymer Syntheses and Characterization. Chin Sci Publ, Beijing Braun D, Cherdron H, Kern W, Huan B (1981) Translation, Techniques of Polymer Syntheses and Characterization. Chin Sci Publ, Beijing
24.
25.
26.
go back to reference Musto P, Martuscelli E, Ragosta G, Russo P, Scarinzi G (1998) J Appl Polym Sci 69:1029–1042CrossRef Musto P, Martuscelli E, Ragosta G, Russo P, Scarinzi G (1998) J Appl Polym Sci 69:1029–1042CrossRef
27.
28.
go back to reference Ferry JD (1980) Viscoelastic properties of polymers. Wiley, New York Ferry JD (1980) Viscoelastic properties of polymers. Wiley, New York
29.
go back to reference Nagendiran S, Premkumar S, Alagar M (2007) J Appl Polym Sci 106:1263–1273CrossRef Nagendiran S, Premkumar S, Alagar M (2007) J Appl Polym Sci 106:1263–1273CrossRef
31.
go back to reference Arthur WS, Leonard JB (1999) In: Nalwa H (ed) Handbook of low and high dielectric constant materials and their applications, 4th edn. Academic, San Diego H Arthur WS, Leonard JB (1999) In: Nalwa H (ed) Handbook of low and high dielectric constant materials and their applications, 4th edn. Academic, San Diego H
33.
go back to reference Konecny P, Cerny M, Voldanova J, Malac J, Simonik J (2007) Polym Adv Technol 18:122–127CrossRef Konecny P, Cerny M, Voldanova J, Malac J, Simonik J (2007) Polym Adv Technol 18:122–127CrossRef
34.
go back to reference Khonakdar HA, Wagenknecht U, Jafari SH, Hassler R, Eslami H (2004) Adv Polym Technol 23:307–315CrossRef Khonakdar HA, Wagenknecht U, Jafari SH, Hassler R, Eslami H (2004) Adv Polym Technol 23:307–315CrossRef
Metadata
Title
Liquid crystalline epoxy resin modified cyanate ester for high performance electronic packaging
Authors
Xiaoyan Zhang
Aijuan Gu
Guozheng Liang
Dongxian Zhuo
Li Yuan
Publication date
01-11-2011
Publisher
Springer Netherlands
Published in
Journal of Polymer Research / Issue 6/2011
Print ISSN: 1022-9760
Electronic ISSN: 1572-8935
DOI
https://doi.org/10.1007/s10965-010-9549-3

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