首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Long range order in Si(100) surfaces engineered with porphyrin nanostructures
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Long range order in Si(100) surfaces engineered with porphyrin nanostructures

机译:用卟啉纳米结构设计的Si(100)表面的远距离有序

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Engineering of Si(100) with ordered organic nanostructures represents an advanced method to manufacture hybrid organic/inorganic systems useful for different applications. Well-ordered and densely packed molecules can be obtained by a self-assembly process that depends on directional inter-molecular interactions such as π-π stacking, electrostatic, dipole-dipole or van der Waals interactions, and other more complex forces. Macrocycles are well known to aggregate both in solution and in thin films as a result of some of the above-mentioned interactions. In our study, Si(100) substrates were functionalized with a covalent 4-CICH2C6H4SiCI3 monolayer that binds to the surface using the -SiCI3 group and leaves a -CH2CI group unreacted. The remaining alkyl chloride functionality at the top of the Si(100) substrate allowed additional covalent functionalization with a porphyrin monolayer that resulted in ordered, surface-confined porphyrin assemblies. X-ray photoelectron spectroscopy gave indication of the porphyrin grafting mode. Atomic force microscopy showed a long range order of these nanostructures. Emission measurements confirmed the porphyrin luminescence.
机译:具有有序有机纳米结构的Si(100)工程代表了一种先进的方法,用于制造可用于不同应用的混合有机/无机系统。可以通过自组装过程获得有序且紧密堆积的分子,该过程取决于方向性的分子间相互作用,例如π-π堆积,静电,偶极-偶极或范德华相互作用以及其他更复杂的力。众所周知,由于某些上述相互作用,大环在溶液和薄膜中均会聚集。在我们的研究中,Si(100)衬底被共价4-CICH2C6H4SiCI3单层功能化,该单分子层使用-SiCI3基团与表面结合,而未使-CH2Cl基团反应。 Si(100)衬底顶部的残留烷基氯官能团允许用卟啉单层进行额外的共价官能化,从而形成有序的,表面受限的卟啉组装体。 X射线光电子能谱表明了卟啉接枝方式。原子力显微镜显示了这些纳米结构的长距离有序。发射测量结果证实了卟啉发光。

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