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Spectator cation size effect on the work function and stability of self-compensated hole-doped polymers

机译:观众阳离子尺寸对自补偿空穴掺杂聚合物的功函数和稳定性的影响

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The 'free' ions needed to balance the 'fixed', covalently bonded ions in a conventional polyelectrolyte are often thought to play little role beyond charge balancing, processability and morphology control. In self-compensated, hole-doped polymers, free cations, together with mobile holes on the polymer backbone, balance the covalently tethered counter-anions. We show here that these 'spectator' cations not only influence the ionization energy (and work function) of the polymer, but also, perhaps surprisingly, determine the stability of the ultrahigh-workfunction state. We attribute these two effects to the dependence on the spectator cation size of surface ionic layering, and coulombic stabilization of the anion sites, respectively. The smaller cations provide larger coulombic stabilization of the anionic site, raising the energetic barrier for hole transfer to the anion or its hydration water, thereby blocking de-doping of the polymer backbone. We demonstrate these effects in an important model of a high-ionization-energy triarylamine-fluorene copolymer TFB with trifluoromethanesulfonylimidosulfonyl as a tethered counter-anion, and a family of spherical monovalent cations as spectators (Li+, Na+, Cs+, NMe4+ and NEt4+). Using Li+ as a spectator cation, we further demonstrate ultrahigh-workfunction hole injection layers for TFB semiconductor with markedly enhanced stability to ambient processing and baking. This work leads to a new design rule for stable, self-compensated, hole-doped polymer systems with ultrahigh work function.
机译:在传统的聚电解质中,平衡“固定”,共价键合离子所需的“自由”离子经常被认为是超越电荷平衡,加工性和形态控制的少作用。在自补偿的,掺杂的孔掺杂的聚合物,自由阳离子以及聚合物主链上的移动孔,平衡共价束缚的反阴离子。我们在这里展示了这些“观众”阳离子不仅影响聚合物的电离能量(和功函数),而且可能令人惊讶地影响超高工作功能状态的稳定性。我们将这两种效应归因于对表面离子分层的观众阳离子尺寸的依赖性,以及阴离子位点的库仑稳定性。较小的阳离子提供了阴离子部位的较大的库仑稳定性,提高了对阴离子或其水合水的空穴转移的能量屏障,从而阻断了聚合物主链的去掺杂。我们在高离子化 - 能量三芳基芴 - 芴共聚物TFB的重要模型中展示了具有三氟甲磺酰基嘧磺酰基的重要模型,以及作为观众(Li +,Na +,Cs +,NME4 +和Net4 +)的球形一价阳离子。使用Li +作为观众阳离子,我们进一步证明了用于TFB半导体的超高工作空穴注入层,具有明显增强的环境加工和烘烤的稳定性。这项工作导致具有超高压工作功能的稳定,自补货,掺杂的聚合物系统的新设计规则。

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