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首页> 外文期刊>Journal of Membrane Science >Phase behavior of polymer/diluent/diluent mixtures and their application to control microporous membrane structure
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Phase behavior of polymer/diluent/diluent mixtures and their application to control microporous membrane structure

机译:聚合物/稀释剂/稀释剂混合物的相行为及其在控制微孔膜结构中的应用

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Rechargeable battery separators containing controlled pores were fabricated via the thermally-induced phase separation (TIPS) process. Based on the idea that pores could be manipulated by controlling the liquid-liquid phase separation temperature in the TIPS process, phase boundaries of the polymer-diluent systems were controlled by using diluent mixtures. Phase behaviors of the polymer/diluent/diluent ternary blends consisting of polyethylene (PE) as polymer, and soybean oil (SBO) and dioctyl phthalate (DOP) as diluents were explored. PE/SBO and PE/DOP binary blends, and PE/SOB/DOP ternary blends exhibited typical upper critical solution temperature (UCST) type phase behaviors, and the phase separation temperatures of the PE/SBO blends were higher than those of the PE/DOP blends. When the mixing ratio of the polymer and diluent-mixture was fixed, the phase separation temperature of the PE/SBO/DOP blend initially increased with increasing SBO content in the diluent-mixture passing through a maximum centered at about 80 wt% SBO and decreased beyond this point. Furthermore, the phase separation temperature of the PE/diluent-mixture blend was always higher than that of the PE/SBO blend when the diluent-mixture contained more than or equal to 50 wt% SBO. To understand the observed phase behavior of the blends, thermodynamic analyses based on the lattice-fluid theory were performed. Larger pore membranes were fabricated from the blend when higher phase separation temperatures of the blend were exhibited.
机译:通过热诱导相分离(TIPS)工艺制造了包含受控孔的可充电电池隔板。基于可以通过在TIPS过程中控制液-液相分离温度来控制孔的想法,通过使用稀释剂混合物来控制聚合物-稀释剂系统的相界。探索了由聚乙烯(PE)作为聚合物,大豆油(SBO)和邻苯二甲酸二辛酯(DOP)组成的聚合物/稀释剂/稀释剂三元共混物的相行为。 PE / SBO和PE / DOP二元共混物以及PE / SOB / DOP三元共混物表现出典型的上临界溶液温度(UCST)型相行为,并且PE / SBO共混物的相分离温度高于PE / SBO和PE / DOP二元共混物DOP混合。当聚合物和稀释剂混合物的混合比固定时,PE / SBO / DOP共混物的相分离温度首先随着稀释剂混合物中SBO含量的增加而增加,并通过以约80 wt%SBO为中心的最大值,然后降低超越这个点。此外,当稀释剂混合物包含大于或等于50wt%的SBO时,PE /稀释剂混合物的混合物的相分离温度总是高于PE / SBO混合物的相分离温度。为了了解所观察到的共混物的相行为,进行了基于晶格流理论的热力学分析。当共混物显示出更高的相分离温度时,由共混物制造出更大的孔膜。

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