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SUMMARY:Solution processable and crosslinkable phenothiazine polymers
DTSTART;VALUE=DATE-TIME:20260824T130000Z
DTEND;VALUE=DATE-TIME:20260824T131500Z
UID:216492400751
DESCRIPTION:Organic redox-active polymers (RAPs) have emerged as promising
  energy\nstorage materials since their alternate material feedstocks would
 \nreduce dependence on strategic minerals such as lithium\, cobalt\, and\n
 nickel. In typical polymer composite electrodes\, a large fraction of\nthe
  mass loading (30-50%) is occupied by high molecular weight polymer\nbinde
 r such as polyvinylidine fluoride (PVDF) and conductive carbon\nadditive\,
  representing a large proportion of inactive mass on the\nelectrode. This 
 work aims to increase the active mass loading\nefficiency and demonstrates
  an additive free\, solution processable\,\nand crosslinkable polymer cont
 aining phenothiazines as the redox\nactive moiety for charge storage. Trad
 eoffs in electrochemical\nproperties such as (dis)charge rate capability\,
  accessible capacity\,\nand coulombic efficiency are demonstrated as a fun
 ction of\ncrosslinking density. These results suggest that the thermophysi
 cal\nproperties that result from changing crosslinking densities have\npro
 found effects on their electrochemical performance and help to\nguide the 
 design of new polymer-based active materials.\n
LOCATION:McCormick Place Convention Center - S401d - https://acs.digitelli
 nc.com/live/37
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