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¡¾ÌâÃû¡¿ Synthesis and property studies of oligomer obtained from the reaction of 4-vinylbenzocyclobutene and styrene with divinyl tetramethyl disiloxane-bisbenzocyclobutene
¡¾×÷Õß¡¿Yewei Xu, Fanghua Zhu, Liqin Xie, Junxiao Yang, Lin Zhang, Rugang Xie
¡¾ÔÓ־ȫ³Æ¡¿ e-polymers
¡¾Äê, ¾í(ÆÚ), ÆðÖ¹Ò³Âë¡¿e-Polymers 2010, no. 013

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Originally posted by lxj_zk at 2010-06-03 18:00:52:
FN ISI Export Format
VR 1.0
PT  J
AU  Xu, YW
Zhu, FH
Xie, LQ
Yang, JX
Zhang, L
Xie, RG
AF  Xu, Yewei
Zhu, Fanghua
Xie, Liqin
Yang, Junxiao
Zhang, Lin
Xie, Rugang
TI  Synthesis a ...

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moonhunter

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2Â¥2010-06-03 17:27:16
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tiansy

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xuyewei1982(½ð±Ò+1):лл 2010-06-03 19:22:58
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lxj_zk

Òø³æ (СÓÐÃûÆø)

xuyewei1982(½ð±Ò+4):Íò·Ö¸Ðл 2010-06-03 19:25:18
FN ISI Export Format
VR 1.0
PT  J
AU  Xu, YW
Zhu, FH
Xie, LQ
Yang, JX
Zhang, L
Xie, RG
AF  Xu, Yewei
Zhu, Fanghua
Xie, Liqin
Yang, Junxiao
Zhang, Lin
Xie, Rugang
TI  Synthesis and property studies of oligomer obtained from the reaction of 4-vinylbenzocyclobutene and styrene with divinyl tetramethyl disiloxane-bisbenzocyclobutene
SO  E-POLYMERS
LA  English
DT  Article
ID  NANOPARTICLES; DIENOPHILES; MONOMERS
AB  Radical copolymerization of 4-vinylbenzocyclobutene (VBCB) with styrene (St) afforded the copolymer (4-vinylbenzocyclobutene-co-styrene) (VBCB-St). Reaction of VBCB-St and divinyl tetramethyl disiloxane-bisbenzocyclobutene (DVSBCB) gave the oligomer (VBCB-St-DVSBCB), which was subsequently subjected to the cure reaction. The structures of VBCB-St and oligomer (VBCB-St-DVSBCB) were characterized by FTIR and H-1 NMR, which are in agreement with the proposed structures. Molecular weights of the synthesized polymers were estimated by gel permeation chromatography (GPC). Differential scanning calorimetry (DSC) showed that VBCB-St exhibited glass transition temperature (T-g > 95 degrees C) however it is not the case for the oligomers (VBCB-St-DVSBCB). TG measurements indicated that the polymers had the good thermal stability with decomposition temperatures (T-D > 370 degrees C). The polymer resin possessed good film planarization in the AFM images and the process of oligomer curing on a wafer without fusion and flow. These results indicated that the oligomer (VBCB-St-DVSBCB) is a promising film material with a relatively low cost.
C1  [Xu, Yewei; Xie, Liqin; Yang, Junxiao] SW Univ Sci & Technol, Sch Mat Sci & Engn, Mianyang 621010, Sichuan, Peoples R China.
[Xu, Yewei; Zhu, Fanghua; Zhang, Lin] China Acad Engn Phys, Res Ctr Laser Fus, Mianyang 621900, Sichuan, Peoples R China.
[Xie, Rugang] Sichuan Univ, Dept Chem, Chengdu 610064, Sichuan, Peoples R China.
RP  Yang, JX, SW Univ Sci & Technol, Sch Mat Sci & Engn, Mianyang 621010, Sichuan, Peoples R China.
EM  yangjunxiao@swust.edu.cn
zhlmy@sina.com
FU  National Nature Science Foundation of China [NSFC20574046]
FX  We are grateful to the National Nature Science Foundation of China (NSFC20574046) for supporting this research.
NR  15
TC  0
PU  EUROPEAN POLYMER FEDERATION
PI  STRASBOURG
PA  1, QUAI LEZAY-MARNESIA, F067000 STRASBOURG, FRANCE
SN  1618-7229
J9  E-POLYMERS
JI  e-Polymers
PD  FEB 10
PY  2010
AR  013
PG  8
SC  Polymer Science
GA  558OW
UT  ISI:000274755100001
ER

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