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an innovative method for the preparation of membranes for proton conduction nanopolimeriche for use in fuel cells or in reactors, ca

机译:一种用于燃料电池或反应堆的质子传导纳米聚合物膜制备的创新方法

摘要

The invention is based on the preparation of an organic solution of preferably phosphonic acids and tetravalent metals salts, preferably of Zr, Ti, Sn and Ce, in organic solvents, which behaves as a solution of layered tetravalent metals salts, preferably phosphate-phosphonates, which are completely insoluble in the known solvents. This peculiarity allows an easy insertion of particles of the above compounds in the pores of porous membranes, in the matrices of those polymers, which are soluble in the same organic solvents, as well as in the membrane/electrode interfaces of fuel cells. The use of tetravalent metals salts, preferably zirconium phosphate-phosphonates, possessing high proton conductivity (in some cases higher than 10-1 S cm-1) allows the preparation of impregnated porous membranes and of nano-polymeric membranes combining good mechanical properties, and/or reduced permeability to gaseous species, with good proton conductivity. These membranes can therefore be employed in fuel cells even at temperatures higher than 80° C. These membranes also possess a high catalytic activity and can therefore be employed in catalytic membrane reactors.
机译:本发明基于在有机溶剂中制备优选膦酸和四价金属盐,优选Zr,Ti,Sn和Ce的有机溶液的有机溶液,该溶液起层状四价金属盐,优选磷酸盐-磷酸盐的溶液的作用。它们完全不溶于已知溶剂。这种特性使得上述化合物的颗粒易于插入多孔膜的孔中,那些可溶于相同有机溶剂的聚合物的基质中以及燃料电池的膜/电极界面中。具有高质子传导性(在某些情况下高于10-1 S cm-1)的四价金属盐,优选磷酸锆膦酸盐的使用可以制备具有良好机械性能的浸渍多孔膜和纳米聚合物膜,并且/或降低了对气态物质的渗透性,并具有良好的质子传导性。因此,即使在高于80℃的温度下,这些膜也可以用在燃料电池中。这些膜还具有高催化活性,因此可以用在催化膜反应器中。

著录项

  • 公开/公告号ITPG20020015A1

    专利类型

  • 公开/公告日2003-09-22

    原文格式PDF

  • 申请/专利权人 ALBERTI GIULIO;CASCIOLA MARIO;

    申请/专利号IT2002PG00015

  • 发明设计人 PICA MONICA;ALBERTI GIULIO;CASCIOLA MARIO;

    申请日2002-03-22

  • 分类号C08J9/40;B01D69/14;B01J19/24;B01J27/16;B01J31/02;B01J31/18;B01J35/06;B01J37/02;C07F7;C07F9/38;C07F19;C08J5/22;H01B1/06;H01M8/02;H01M8/10;

  • 国家 IT

  • 入库时间 2022-08-22 00:00:14

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