Crystal phase transformations within propylene/hexene-1 copolymers films as induced by direct current discharge treatment

被引:3
作者
Drachev, AI
Rishina, LA
Gilman, AB
Galashina, NM
Shchegolikhin, AN
机构
[1] Russian Acad Sci, Enikolopov Inst Synth Polymer Mat, Moscow 117393, Russia
[2] Russian Acad Sci, NN Semenov Chem Phys Inst, Moscow 119991, Russia
[3] Russian Acad Sci, Emanuel Inst Biochem Phys, Moscow 119991, Russia
基金
俄罗斯基础研究基金会;
关键词
polypropylene/hexene-1; copolymer; phase transformation; glow discharge; treatment;
D O I
10.1016/j.eurpolymj.2005.01.020
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The effect of a direct current discharge on the films of polypropylene and copolymers of propylene and hexene-1 synthesized with an isospecific catalytic system, rac-Me(2)Silnd,ZrCl2-Polymethylaluminoxane, was investigated. The treatment of isotactic polypropylene films by the discharge did not affect the ratio of crystalline phases in the polymer to a measurable extent. However, for the plasma treated films of copolymers of propylene and hexene-1 (the hexene-1 content of 1-2 mol%), a structural transformation of gamma-modification into alpha-modification has been noticed. The observed phase transition has no apparent relation to any changes in microstructure of the copolymer chain because melting temperature values and the stereoregularity parameters of the samples remained practically unchanged. An experimental investigation of the specific influence exerted by individual components of a direct current discharge on the crystalline structure of copolymers has been undertaken. The exposure to a quantum component of the discharge did not induce any changes in the phase composition of the irradiated samples. The heating of the samples led to a negligible change of their phase composition. It has been determined that the surface of polypropylene and propylene/hexene-1 copolymer films facing the cathode in the course of the direct current discharge treatment had an accumulated negative charge Q > 10 nC/cm(2) which persisted for a long time afterwards. It has been suggested that the electrical field of a negative discharge may be the main cause of the gamma-into alpha-phase transition in propylene/hexene-1 copolymers under the plasma effect. To verify this assumption, a propylene/hexene-1 copolymer film was charged under electron beam with energy of 4 keV. The electron beam treatment of the film resulted to the negative charge value of 11nC/cm(2). The electron beam irradiation has induced the phase. transition which was quite similar to the transition observed as the result of plasma treatment. So, it may be concluded that the phase transition from crystal gamma-modification to a-modification under the effect of direct current discharge which has been investigated for copolymers of propylene and hexene-1 is induced by electric field of the negative charge accumulated at the surface layers of the films of the copolymers. (c) 2005 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1688 / 1698
页数:11
相关论文
共 32 条
[1]   Crystallization of metallocene-made isotactic polypropylene:: Disordered modifications intermediate between the α and γ forms [J].
Auriemma, F ;
De Rosa, C .
MACROMOLECULES, 2002, 35 (24) :9057-9068
[2]  
BRUCKNER S, 1989, NATURE, V340, P455, DOI 10.1038/340455a0
[3]   THE ROLE OF INTERMOLECULAR INTERACTIONS IN DETERMINING THE MODE OF PACKING OF CRYSTALLINE POLYMERS - ENERGY CALCULATIONS ON ISOTACTIC POLYPROPYLENE [J].
CORRADINI, P ;
PETRACCONE, V ;
PIROZZI, B .
EUROPEAN POLYMER JOURNAL, 1983, 19 (04) :299-304
[4]  
DRACHEV AI, 2003, HIGH ENERG CHEM, V37, P240
[5]   THE INFLUENCE OF REGIO-IRREGULARITIES AND STEREOIRREGULARITIES ON THE CRYSTALLIZATION BEHAVIOR OF ISOTACTIC POLY(PROPYLENE)S PREPARED WITH HOMOGENEOUS GROUP-IVA METALLOCENE METHYLALUMINOXANE ZIEGLER-NATTA CATALYSTS [J].
FISCHER, D ;
MULHAUPT, R .
MACROMOLECULAR CHEMISTRY AND PHYSICS, 1994, 195 (04) :1433-1441
[6]  
FISHER D, 2000, METALLOCENE BASED PO, V1, P103
[7]  
Gil'man AB, 1998, HIGH ENERG CHEM+, V32, P46
[8]  
Gil'man AB, 1999, HIGH ENERG CHEM+, V33, P188
[9]   Polypropylene films in a direct-current discharge [J].
Gil'man, AB ;
Rishina, LA ;
Drachev, AI ;
Shibryaeva, LS .
HIGH ENERGY CHEMISTRY, 2001, 35 (02) :128-133
[10]  
GILMAN AB, 1999, KHIM VYS ENERG, V33, P221