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1)  solvent-induced phase separation
溶致相分离
1.
PDLC based on PMMA thin film was fabricated using solvent-induced phase separation and a general study on the factors which will affect the switching effect was represented in the paper for the first time.
溶致相分离的方法制备了PMMA基的PDLC,并首次对影响其光开关效应的因素做了较为系统的研究。
2)  nonsolvent-induced phase separation
非溶剂致相分离法
1.
As a generic method,the preparation techniques of nonsolvent-induced phase separation for Ployvinylidene Fluoride(PVDF) membranes have been widely applied.
非溶剂致相分离法作为制备聚偏氟乙烯(PVDF)膜一种常用的方法已得到广泛推广,但因影响其成膜因素诸多,至今没有一种较好的协同效果。
3)  thermally induced phase separation
热致相分离
1.
Preparation of polyethylene/nano-titania blend membrane via thermally induced phase separation;
热致相分离法制备聚乙烯/纳米二氧化钛共混膜
2.
Development of polymer microporous membranes via thermally induced phase separation;
热致相分离法制备聚合物微孔膜的研究进展
3.
Effects of mixed diluents on isotactic polypropylene microporous membrane formation via thermally induced phase separation process;
混合稀释剂对热致相分离法制备等规聚丙烯微孔膜的影响
4)  TIPS [英][tip]  [美][tɪp]
热致相分离
1.
Isotactic polypropylene(iPP) flat sheet microporous membranes were prepared via thermally induced phase separation(TIPS).
以热致相分离法制备了聚丙烯平板微孔膜。
2.
The hybrid membranes of PU/SiO_2 were prepared via thermal induced phase separation(TIPS) methods.
用热致相分离法制备了PU/SiO2杂化膜,研究了不同SiO2及其用量对PU/SiO2/溶剂体系微孔膜微孔结构的影响,并测试了膜的水通量。
3.
The hydrophilicity of UHMWPE micro porous material produced by means of TIPS was improved by structure amendment, surface active agent addition and dipping in solvent, resulted in good results The results of the property test of the modified UHMWPE showed these methods did not affect the property of the material in practice us
通过改善结构、添加表面活性剂以及浸泡三种方法对采用热致相分离法制成的超高摩尔质量聚乙烯微孔材料的亲水性能进行了改善 ,效果均很明显。
5)  thermally-induced phase separation
热致相分离
1.
Formation mechanism and morphology control of porous polymeric membranes via thermally-induced phase separation;
热致相分离法聚合物膜形成机理与形貌控制
2.
Study on microstructure of microporous polypropylene membrane formed via thermally-induced phase separation;
热致相分离制备聚丙烯微孔膜微观结构的研究
3.
By the general thermally-induced phase separation(TIPS) technique and freezing-dry technology,it can fabricate the low-density,microporous perdeuterated polystyrene foams used in inertial confinement fusion.
采用聚合物溶液的热致相分离技术,并通过冷冻干燥制备出具有开放状网络孔洞结构的低密度全氘代聚苯乙烯泡沫。
6)  thermal induced phase separation
热致相分离
1.
Recent progress on the preparation methods,polymer materials and formation mechanisms of the TIPS(thermal induced phase separation) membranes was reviewed in this paper.
综述讨论了热致相分离法(TIPS)制作微孔膜的影响因素及相关规律,以及近年来在膜制作方法和膜材质方面的一些重要的研究进展。
2.
Formation mechanisms of the porous membranes, which were prepared by thermal induced phase separation, were reviewed.
综述了由热致相分离法制备多孔膜的成膜机理。
补充资料:光致不溶型感光高分子
分子式:
CAS号:

性质:指在光的作用下溶解度下降的高分子材料。包括光交联型和光聚合型高分子。光能作用于感光物质产生的自由基作为聚合和交联反应的引发剂,交联和进一步聚合的结果是形成分子量更大,溶解度大大下降的产物。有关光致不溶型感光高分子的特点和性能参见光交联型感光高分子和光聚合型感光高分子。这种树脂广泛用于光敏涂料和负性光刻蚀剂的制备。

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