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Hybrid inorganic–organic superlattice structures with atomic layer deposition/molecular layer deposition

机译:具有原子层沉积/分子层沉积的混合无机-有机超晶格结构

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摘要

A combination of the atomic layer deposition (ALD) and molecular layer deposition (MLD) techniques is successfully employed to fabricate thin films incorporating superlattice structures that consist of single layers of organic molecules between thicker layers of ZnO. Diethyl zinc and water are used as precursors for the deposition of ZnO by ALD, while three different organic precursors are investigated for the MLD part: hydroquinone, 4-aminophenol and 4,4′-oxydianiline. The successful superlattice formation with all the organic precursors is verified through x-ray reflectivity studies. The effects of the interspersed organic layers/superlattice structure on the electrical and thermoelectric properties of ZnO are investigated through resistivity and Seebeck coefficient measurements at room temperature. The results suggest an increase in carrier concentration for small concentrations of organic layers, while higher concentrations seem to lead to rather large reductions in carrier concentration.
机译:原子层沉积(ALD)和分子层沉积(MLD)技术的结合已成功地用于制造结合了超晶格结构的薄膜,该超晶格结构由较厚的ZnO层之间的有机分子单层组成。二乙基锌和水用作通过ALD沉积ZnO的前体,而MLD部分则研究了三种不同的有机前体:对苯二酚,4-氨基苯酚和4,4'-氧二苯胺。通过X射线反射率研究验证了所有有机前体均能成功形成超晶格。通过室温下的电阻率和塞贝克系数测量研究了散布的有机层/超晶格结构对ZnO的电和热电性能的影响。结果表明,对于低浓度的有机层,载流子浓度增加,而较高的浓度似乎导致载流子浓度的相当大的降低。

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