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A Solvent-Free Solution: Vacuum-Deposited Organic Monolayers Modify Work Functions of Noble Metal Electrodes

机译:无溶剂解决方案:真空沉积的有机单分子层可改变贵金属电极的功函数

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The energy level alignment between organic semiconductors (OSCs) and the respective (metal) electrodes in organic electronic devices is of key importance for efficient charge carrier injection. For many years, researchers have attempted to control this energy level alignment by means of functional self-assembled monolayers or the insertion of thin injection layers (made, e.g., of doped OCSs or pure dopants). The present work demonstrates an alternative to these approaches, namely the use of phthalocyanine monolayers as contact primers, which are deposited onto noble metal electrodes by means of vacuum deposition. It is shown that polar as well as non-polar phthalocyanines modify the work functions of clean Au(111) and Ag(111) surfaces as a function of their coverage and thus enable quantitative control of the metal work functions. This behavior is successfully replicated for the respective polycrystalline metal surfaces and it is found that full monolayers can even withstand air exposure when protected by sacrificial multilayers, which are afterward removed by thermal desorption.
机译:有机电子器件中有机半导体(OSC)与相应的(金属)电极之间的能级对准对于有效的载流子注入至关重要。多年来,研究人员试图通过功能性自组装单层或插入薄注入层(例如由掺杂的OCS或纯掺杂剂制成)来控制这种能级对准。本工作证明了这些方法的替代方法,即使用酞菁单层作为接触底漆,通过真空沉积将其沉积在贵金属电极上。结果表明,极性和非极性酞菁都可以根据其覆盖率来改变清洁的Au(111)和Ag(111)表面的功函数,从而可以定量控制金属功函数。此行为已成功地复制到各个多晶金属表面,并且发现当受牺牲多层保护时,完整的单层甚至可以承受空气暴露,然后通过热脱附将其除去。

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