Abstract:
The invention provides microporous polymer films which comprise a halopolymer in which the repeat units are -(C n H 2n )- and -(C m X 2m )-, where each X independently represents fluorine or chlorine and the values of n and m are more than one and less than six. The films of the invention can be suitable for use in high temperature applications and can be substantially inert to certain chemically aggressive substances such as alkali and alkaline earth metals. The films find particular application in electrochemical cells comprising a lithium anode and thionyl chloride electrolyte.
Abstract translation:本发明提供了包含卤代聚合物的微孔聚合物膜,其中重复单元是 - (C n H 2n) - 和 - (C m X 2 m) - ,其中每个X独立地表示氟或氯,并且n和m的值大于1, 小于6。 本发明的膜可以适用于高温应用,对某些化学腐蚀性物质如碱金属和碱土金属基本上是惰性的。 该电影特别适用于包含锂阳极和亚硫酰氯电解质的电化学电池。
Abstract:
The present invention generally relates to porous membranes and other porous articles. In one aspect, the present invention is generally directed to porous membranes and other articles that have a pore size comparable to feature sizes of the extracellular matrix. Such articles may be useful, for example, for tissue engineering (e.g., as a substrate for culturing cells), as a filter, or for other applications. In some cases, the membranes may be formed from biocompatible and/or biodegradable materials. In some embodiments, such membranes may be formed using solvent evaporation induced self-assembly (EISA) techniques, although other techniques may be used in other embodiments. Still other aspects of the present invention are directed to methods of using such articles, kits involving such articles, and the like.
Abstract:
Methods of forming a polymeric structure having a plurality of cells therein that include contacting a polymeric material that includes a first phase and a second phase with a composition comprising carbon dioxide to form the polymeric structure having a plurality of cells therein are described. Polymeric materials and microelectronic devices formed by such methods are also described.
Abstract:
Process for the production of a polymer foam with use of hydrogel pearls as porosity generating template, comprising the steps of: - providing a matrix of polymer or prepolymer in viscous state including, as a dispersed phase, hydrogel pearls, where said pearls are dispersed in said matrix so as to generate intercommunicating cells, - causing the solidification of the matrix of polymer or prepolymer to obtain said polymer foam including said hydrogel pearls, characterised in that it comprises the operation of subjecting the thus obtained foam to conditions which cause the dehydration of said hydrogel pearls so as to obtain a reduction of volume of said pearls and - removing the dehydrated pearls by immersion in water of the polymer foam or by exposure of the foam to a flow of pressurized gas or water.
Abstract:
The invention relates to an isolated waterproof polymeric nanomembrane comprising pores of different geometric shapes and of a controlled size between 10 and 1000 nm, which is larger than the thickness of the membrane, and a method of producing the same comprising the process steps a. Providing a sacrifice layer on a surface of a solid support; b. Providing a polymerized layer of less than 1000 nm thickness on the surface of the sacrifice layer, by depositing a mixture of a polymer or a polymer precursor with a geometrically undefined pore template which is larger than the thickness of the polymerized layer, optionally followed by polymerization and/or crosslinking; c. Removing the pore template to obtain the polymerized layer with a controlled pore size; and d. Removing the sacrifice layer, thereby separating the solid support from the polymerized layer.