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DTSTART:19810329T030000
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DTSTART:19961027T030000
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UID:DSC-23097
DTSTART;TZID=Europe/Berlin:20260904T103000
SEQUENCE:1788240925
TRANSP:OPAQUE
DTEND;TZID=Europe/Berlin:20260904T113000
URL:https://dresden-science-calendar.de/calendar/de/detail/23097
LOCATION:IPF\, Hohe Straße 601069 Dresden
SUMMARY:\"Strategic design of metal organic frameworks for different applic
 ations in polymer systems\"
CLASS:PUBLIC
DESCRIPTION:Speaker: n.n.\nInstitute of Speaker: \nTopics:\nPhysik\, Chemie
 \, Materialien\n Location:\n  Name: IPF (Conference Hall)\n  Street: Hohe 
 Straße 6\n  City: 01069 Dresden\n  Phone: \n  Fax: \nDescription: ABSTRAC
 T  Metal organic frameworks (MOF) are special class of coordination polyme
 rs\, which become a hot area of research in the field of hybrid materials 
 science\; due to their versatile structural features\, high surface area\,
  and uniform porosities with predesigned molecular dimensions. Such attrac
 tive structural properties make them extremely useful in state-of-the art 
 material research for various functional applications particularly in gas 
 storage\, separation\, sensing\, proton conductivity and many more. Our ex
 ploration with some newly synthesized MOFs are focused on\, that are showi
 ng unique application potential in selective CO2 sorption\, hydrogen stora
 ge\, sensing using the structural flexibility\; so on and so forth. Recent
 ly\, we have explored that the designed MOFs also exhibit excellent proton
 /ion conduction behavior making them suitable for fuel cell membrane desig
 n. Interestingly\, when some of the MOFs are mixed with some soluble\, bio
 compatible\, cost-effective polymers like polyvinylidene fluoride (PVDF) a
 nd polyvinylpyrrolidone (PVP)\; the mixed matrix shows a significantly imp
 roved proton conductivity which is suitable for their practical use as a s
 ustainable fuel cell membrane.
DTSTAMP:20260902T014824Z
CREATED:20260826T053552Z
LAST-MODIFIED:20260901T053525Z
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