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Determination of interface dipole energy at the interface of ruthenium-oxide-coated anode with organic material using synchrotron radiation photoemission spectroscopy

机译:同步辐射光发射光谱法测定氧化钌包覆阳极与有机材料界面的界面偶极能量

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摘要

4,4'-Bis[N-1-naphthyl)-N-phenylamino]biphenyl (alpha-NPD) was deposited in situ on both ruthenium oxide-coated indium-tin oxide (RuOx-ITO) and O-2-plasma-treated ITO (O-2-ITO) anodes, and their interface dipole energies were quantitatively determined using synchrotron radiation photoemission spectroscopy. The dipole energy of RuOx-ITO was lower by 0.2 eV than that of O-2-ITO even though RuOx-ITO had a higher work function. Secondary electron emission spectra after deposition of alpha-NPD on anodes revealed that the work function of RuOx-ITO is higher by 0.2 eV than that of O-2-ITO, resulting in a decrease of the turn-on voltage via reduction of hole injection barrier.
机译:4,4'-双[N-1-萘基] -N-苯氨基]联苯(alpha-NPD)原位沉积在氧化钌涂层的氧化铟锡(RuOx-ITO)和O-2-plasma-处理的ITO(O-2-ITO)阳极,并使用同步加速器辐射光发射光谱法定量确定其界面偶极能量。即使RuOx-ITO具有较高的功函,RuOx-ITO的偶极能量也比O-2-ITO低0.2 eV。阳极上沉积有α-NPD后的二次电子发射光谱表明,RuOx-ITO的功函比O-2-ITO的功函高0.2 eV,从而通过减少空穴注入而降低了开启电压。屏障。

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