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An experimental study of poly(9,9-dioctyl-fluorene)and its interfaces with Li, Al, and LiF

机译:聚(9,9-二辛基芴)及其与Li,Al和LiF的界面的实验研究

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摘要

The chemical and electronic structure of a new conjugated polymer. poly(9.9-dioctyl-fluorene), has been studied by photoelectron spectroscopy. The polymer films were free of oxygen contamination (within the detection limits of photoelectron spectroscopy). X-ray and ultraviolet photoelectron spectroscopy was carried out on Li- and LiF-deposition on poly(9,9-dioctyl-fluorene), as well as. on LiF deposition on aluminu~n. In the case of Li-deposition on poly(9,9-dioctyl-fiuorene) films. doping occurred resulting in the formation of polaronic charge carriers at low doping levels and bipolaronic charge carriers at high doping levels. LiF-deposition on poly(9.9-dioctyl-fluorene) did not cause doping of the polymer films, nor did the LiF dissociate at the interface. No significant shifts in a binding energy of the core levels nor any changes in the work function occurred. LiF-deposition on sputter-cleaned aluminum may cause the surface dipole formation, though LiF dissociation was not detected. Al-deposition on LiF/PFO films did not cause dissociation of LW, unlike the case in Alib.
机译:新型共轭聚合物的化学和电子结构。聚(9.9-二辛基芴)已通过光电子能谱进行了研究。聚合物膜没有氧污染(在光电子能谱的检测极限内)。以及在聚(9,9-二辛基芴)上的Li和LiF沉积上进行X射线和紫外光电子能谱分析。铝上的LiF沉积在聚(9,9-二辛基-芴)薄膜上进行锂沉积的情况下。发生掺杂导致形成低掺杂水平的极化电荷载流子和高掺杂水平的双极化电荷载流子。在聚(9.9-二辛基芴)上的LiF沉积不会引起聚合物薄膜的掺杂,也不会在界面上解离LiF。核心水平的结合能没有显着变化,功函数也没有发生任何变化。尽管未检测到LiF离解,但在溅射清洁的铝上沉积LiF可能会导致表面偶极子形成。与Alib中的情况不同,在LiF / PFO膜上进行Al沉积不会引起LW的解离。

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