

FOLLOWUS
a.Key Laboratory of Science and Technology on High-Tech Polymer Materials, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China
b.School of Chemistry and Chemical Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
c.Key Laboratory of Chemical Biology of Hebei Province, College of Chemistry and Environmental Science, Hebei University, Baoding 071002, China
fuwenxin@iccas.ac.cn
Received:09 December 2022,
Revised:2023-1-5,
Accepted:16 January 2023,
Online First:03 March 2023,
Published:01 November 2023
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Sun, Q.; Yuan, Z. W.; Fan, W. J.; Li, M. L.; Fu, W. X. Low dielectric benzocyclobutene-type polymers based on facile synthesis of linear fluorinated monomer. Chinese J. Polym. Sci. 2023, 41, 1760–1766
Quan Sun, Zi-Wei Yuan, Wen-Jie Fan, et al. Low Dielectric Benzocyclobutene-type Polymers Based on Facile Synthesis of Linear Fluorinated Monomer[J]. Chinese Journal of Polymer Science, 2023, 41(11): 1760-1766.
Sun, Q.; Yuan, Z. W.; Fan, W. J.; Li, M. L.; Fu, W. X. Low dielectric benzocyclobutene-type polymers based on facile synthesis of linear fluorinated monomer. Chinese J. Polym. Sci. 2023, 41, 1760–1766 DOI: 10.1007/s10118-023-2955-x.
Quan Sun, Zi-Wei Yuan, Wen-Jie Fan, et al. Low Dielectric Benzocyclobutene-type Polymers Based on Facile Synthesis of Linear Fluorinated Monomer[J]. Chinese Journal of Polymer Science, 2023, 41(11): 1760-1766. DOI: 10.1007/s10118-023-2955-x.
A series of benzocyclobutene (BCB)-based polymeric low-dielectric (low-k) materials were synthesized based on a novel linear fluorinated BCB-type monomer (4F-bis-BCB) with simple and efficient one-step preparation method
exhibiting excellent low dielectric and tunable mechanical properties
as well as great potential for next-generation advanced packaging applications.
A linear fluorinated benzocyclobutene-type monomer (4F-bis-BCB) was facilely synthesized by a one-step copper-catalyzed etherification reaction and a simple precipitation post-purification method. Moreover
a series of BCB-based polymeric low-dielectric (low-
k
) materials were obtained by the thermal-induced ring-opening copolymerization of 4F-bis-BCB with divinyl tetramethyl disiloxane-bisbenzocyclobutene (DVS-BCB) monomer and further simple thermal curing at high temperature (200–300 °C). The resultant fully cured materials demonstrated excellent low dielectric properties at high frequency of 10 GHz (dielectric constant (
D
k
)
<
2.6
dielectric loss (
D
f
)
<
1.57×10
−2
)
great hydrophobicity (water contact angle
>
116°)
ultra-low water absorption (
<
0.19% after soaked in water at room temperature for 60 h) and excellent planarization ability (surface roughness
<
0.56 nm of 3 μm-thick film). Overall
this new fluorinated BCB-type monomer provides us an alternative for the facile preparation of low-
k
polymeric materials and exhibits great potential for future applications in high-frequency communication and three-dimensional high-density packaging technologies.
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