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Polypyrrole materials doped with weakly coordinating anions:influence of substituents and the fate of the doping anion during the overoxidation process

机译:掺杂有弱配位阴离子的聚吡咯材料:过氧化过程中取代基的影响和掺杂阴离子的命运

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The influence of weakly coordinating anions with different shapes and substituents has been studied to get the overoxidation resistance limit of the material,ORL.The anions utilized are derivatives of [Co(C_2B_9H_(11))_2]~-,[B_(12)H_(12)] and [B_(12)H_(11)NH_3]~-.The following tendencies have been established(1)boron cluster monoanions are to date the anions that offer the highest stability to overoxidation of PPy doped materials(2)the ORL stability of the material can not be attributed only to the shape of the cluster(3)monoanionic clusters are far superior than dianionic to get an ORL rise(4)cluster charge density reduction results in ORL rise as has been observed in [Co(C_2B_9H_(11))_2]~-after incorporation of electron-withdrawing substituents with no electron back-donation(5)globular,rigid and large monoanions are less suitable for enhanced ORL values than elongated and non-rigid species(6)adequate anion's substitution produce a rise in the ORL of the material,thus polyether side-arms are beneficial with [Co(C_2B_9H_(11))_2]~-,whereas,T-shaped methylaryl groups are appealing in [B_(12)H_(11)NH_3]~-based materials,respectively,(7)substituents on the anions usually imply higher difficulty in the materials' growth.The high boron contents in these materials has permitted to learn on the fate of the doping anions during the overoxidation process.There is a built-up of the concentration of the doping anion in the electrolyte near surface area,whereas,a depletion is observed in the nearest inner layers.
机译:研究了不同形状和取代基的弱配位阴离子的影响,得出了该材料的抗氧化极限ORL。所用阴离子为[Co(C_2B_9H_(11))_ 2]〜-,[B_(12)的衍生物H_(12)]和[B_(12)H_(11)NH_3]〜。已建立以下趋势(1)硼簇单阴离子是迄今为止对PPy掺杂材料的过氧化具有最高稳定性的阴离子(2) )材料的ORL稳定性不能仅归因于团簇的形状(3)单阴离子团簇远优于二阴离子团簇以获得ORL升高(4)团簇电荷密度降低导致ORL升高,如[ Co(C_2B_9H_(11))_ 2]〜-并入无电子回给的吸电子取代基后(5)球形,刚性和大单阴离子不如细长和非刚性物种更适合提高ORL值(6)适当的阴离子取代会导致材料的ORL升高,因此聚醚-a均方根对[Co(C_2B_9H_(11))_ 2]〜有好处,而T型甲基芳基在基于[B_(12)H_(11)NH_3]〜的材料中具有吸引力,分别是(7)取代基阴离子通常意味着材料的生长更加困难。这些材料中的高硼含量允许人们在过氧化过程中了解掺杂阴离子的命运。电解质在表面积附近,而在最接近的内层中观察到耗尽。

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