Effects of ordered structure on non-isothermal crystallization kinetics and subsequent melting behavior of β-nucleated isotactic polypropylene/graphene oxide composites

被引:0
作者
Yansong Yu
Fangxinyu Zeng
Jinyao Chen
Jian Kang
Feng Yang
Ya Cao
Ming Xiang
机构
[1] Polymer Research Institute of Sichuan University,State Key Laboratory of Polymer Materials Engineering
来源
Journal of Thermal Analysis and Calorimetry | 2019年 / 136卷
关键词
Non-isothermal crystallization kinetics; Graphene oxide; Isotactic polypropylene; -Nucleating agent; Ordered structure;
D O I
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中图分类号
学科分类号
摘要
In this paper, effects of ordered structure on non-isothermal crystallization kinetics and subsequent melting behavior of β-nucleated isotactic polypropylene/graphene oxide composites were investigated. Under all cooling rates, as fusion temperature Tf stepped into the range of 168–178 °C, the ordered structure survived in the melt, resulting in the increase in crystallization peak temperature Tp, the decrease in crystallization activation energy ΔE and the decrease in the half crystallization time t1/2. When endset temperature of cooling Tend = 50 °C, lower cooling rate encouraged the formation of more β-phase. Moreover, the influence of ordered structure on β-α recrystallization was studied by adjusting the Tend. When Tend = 105 °C, higher cooling rate encouraged the formation of more β-phase. The ordered structure was favorable for the improvement of the thermal stability of the β-phase during β-α recrystallization.
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页码:1667 / 1678
页数:11
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共 296 条
[1]  
Kang J(2013)Hydrogenated petroleum resin effect on the crystallization of isotactic polypropylene J Appl Polym Sci 130 25-38
[2]  
Li J(2010)The enhanced nucleating ability of carbon nanotube-supported β-nucleating agent in isotactic polypropylene Colloid Polym Sci 288 681-688
[3]  
Chen S(2008)Measurement of the elastic properties and intrinsic strength of monolayer graphene Science 321 385-388
[4]  
Zhu S(2011)Molecular nanoporous crystals: predictable porosity Nat Mater 10 563-564
[5]  
Li H(2010)Novel properties of graphene nanoribbons: a review J Mater Chem 20 8207-652
[6]  
Cao Y(2008)Materials science. Electrochemical capacitors for energy management Science 321 651-333
[7]  
Yang F(2016)Gas barrier performance of graphene/polymer nanocomposites Carbon 98 313-3511
[8]  
Xiang M(2009)Graphene-based electrode materials for rechargeable lithium batteries J Mater Chem 19 5871-240
[9]  
Wang S-W(2010)Nitrogen doped graphene nanoplatelets as catalyst support for oxygen reduction reaction in proton exchange membrane fuel cell J Mater Chem 20 7114-2623
[10]  
Yang W(2010)Electrochemical ascorbic acid sensor based on DMF-exfoliated graphene J Mater Chem 20 7864-2302