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Wet chemical routes to the assembly of organic monolayers on silicon surfaces via the formation of Si-C bonds: surface preparation,passivation and functionalization

机译:湿化学途径通过形成Si-C键在硅表面上组装有机单层膜:表面制备,钝化和功能化

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摘要

Organic functionalization of non-oxidized silicon surfaces, while allowing for robust chemical passivation of the inorganic substrate, is intended and expected to broaden the chemical, physical and electronic properties of the currently most relevant technological material. Numerous protocols are now available for the preparation of Si-C, Si-O and Si-N bound layers. In particular, the covalent attachment of 1-alkenes and 1-alkynes onto hydride-terminated Si(100) and Si(111) has seen a wealth of research activity starting from the pioneering work of Linford and Chidsey (Alkyl monolayers covalently bonded to silicon surfaces, J. Am. Chem. Soc, 1993, 115(26), 12631-12632). This critical review aims to bring together the available wet-chemical routes toward the formation of silicon-organic monolayers under ambient conditions. Particular emphasis is placed on discussing the reasons behind the need for novel chemical approaches that are straightforward, modular and of wide scope so as to allow the application of silicon electrodes in aqueous electrolytes. A general introduction to biomolecular recognition events at functionalized silicon surfaces is also presented (281 references).
机译:非氧化硅表面的有机功能化,同时允许对无机基材进行强大的化学钝化,旨在并有望拓宽当前最相关的技术材料的化学,物理和电子性能。现在有许多协议可用于制备Si-C,Si-O和Si-N结合层。特别是,1-烯烃和1-炔烃共价连接到氢化物封端的Si(100)和Si(111)上,从Linford和Chidsey的开创性工作(共价键合到硅上的烷基单层)开始,已经开展了大量的研究活动。表面,J.Am.Chem.Soc,1993,115(26),12631-12632)。这项重要的审查旨在将在环境条件下形成有机硅单分子层的可用湿化学途径汇集在一起​​。特别强调讨论需要新颖的化学方法的原因,这些新颖的化学方法必须简单,模块化且范围广泛,以允许将硅电极应用于水性电解质中。还介绍了功能化硅表面上生物分子识别事件的一般介绍(281个参考文献)。

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