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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Tailoring the Electron Affinity and Electron Emission of Diamond (100) 2 x 1 by Surface Functionalization Using an Organic Semiconductor
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Tailoring the Electron Affinity and Electron Emission of Diamond (100) 2 x 1 by Surface Functionalization Using an Organic Semiconductor

机译:通过使用有机半导体的表面官能化定制金刚石(100)2 x 1的电子亲和力和电子发射

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摘要

We present here a synchrotron-based photoemission spectroscopy (PES) study of the organic functionalization of bare single crystalline diamond C(100) 2 x. 1 surface with an organic semiconductor—copper phthalocyanine (CuPc). Our results reveal that CuPc undergoes chemical reactions with the bare diamond surface by covalently bonding to diamond dimers. The functionalizing molecules induce an interface dipole layer that increasingly reduces the work function and electron affinity of diamond with increasing CuPc coverage, transforming bare diamond from a positive electron affinity to a negative electron affinity (NEA) surface. Meanwhile, a significantly enhanced secondary electron emission yield accompanied the reduced electron affinity, as a result of the lowered electron emission barrier and enhanced electron conduction from diamond to vacuum through the grafted molecules. The work function and electron affinity modulation contributed by the induced interface dipole is estimated to be 0.7 eV, on top of the band bending contributions. Our results highlight the utilization of organic semiconductor molecular functionalization as a means to tailor the surface electronic properties of diamond and other conventional inorganic semiconductors. The unique combination of NEA, high electron emission, and organic semiconductor functionality on diamond could lead to the integration of molecular electronic function with diamond devices.
机译:我们在这里提出了基于同步加速器的光发射光谱学(PES)研究的裸单晶金刚石C(100)2 x的有机功能化。 1个表面带有有机半导体-铜酞菁(CuPc)。我们的结果表明,CuPc通过与金刚石二聚体共价键合而与裸露的金刚石表面发生化学反应。功能化分子诱导了界面偶极层,该界面偶极层随着CuPc覆盖率的增加而逐渐降低金刚石的功函数和电子亲和力,从而将裸金刚石从正电子亲和力转变为负电子亲和力(NEA)表面。同时,由于降低了电子发射势垒,并且增强了电子从金刚石通过接枝分子到真空的传导,因此伴随着电子亲和力的降低,二次电子发射产率显着提高。除带弯曲贡献之外,由感应的界面偶极子贡献的功函数和电子亲和力调制估计为0.7 eV。我们的结果突出了利用有机半导体分子功能化作为一种​​手段来调整金刚石和其他常规无机半导体的表面电子性能的方法。 NEA,高电子发射和钻石上的有机半导体功能的独特结合可能导致分子电子功能与钻石设备的整合。

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