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首页> 外文期刊>Journal of Colloid and Interface Science >Formation of uniform ferrocenyl-terminated monolayer covalently bonded to Si using reaction of hydrogen-terminated Si(111) surface with vinylferrocene-decane solution by visible-light excitation
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Formation of uniform ferrocenyl-terminated monolayer covalently bonded to Si using reaction of hydrogen-terminated Si(111) surface with vinylferrocene-decane solution by visible-light excitation

机译:使用氢封端的Si(111)表面与可见光激发的乙烯基二茂铁/正癸烷溶液的反应,形成与Si共价键合的均一的二茂铁基末端单层

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摘要

Electrochemically active self-assembled monolayers (SAM) have been successfully fabricated with atomic-scale uniformity on a silicon (Si)(111) surface by immobilizing vinylferrocene (VFC) molecules through Si-C covalent bonds. The reaction of VFC with the hydrogen-terminated Si (H-Si)(111) surface was photochemically promoted by irradiation of visible light on a H-Si(111) substrate immersed in n-decane solution of VFC. We found that aggregation and polymerization of VFC was avoided when n-decane was used as a solvent. Voltammetric quantification revealed that the surface density of ferrocenyl groups was 1.4×10~(-10)molcm~(-2), i.e., 11% in substitution rate of Si-H bond. VFC-SAMs were then formed by the optimized preparation method on n-type and p-type Si wafers. VFC-SAM on n-type Si showed positive photo-responsivity, while VFC-SAM on p-type Si showed negative photo-responsivity.
机译:通过通过Si-C共价键固定乙烯基二茂铁(VFC)分子,已成功地以原子级均匀性在硅(Si)(111)表面上制造了具有电化学活性的自组装单分子层(SAM)。通过在浸入VFC的正癸烷溶液中的H-Si(111)基板上照射可见光,光化学促进了VFC与氢封端的Si(H-Si)(111)表面的反应。我们发现,当使用正癸烷作为溶剂时,可以避免VFC的聚集和聚合。伏安法定量分析表明,二茂铁基的表面密度为1.4×10〜(-10)molcm〜(-2),即Si-H键的取代率为11%。然后通过优化的制备方法在n型和p型Si晶片上形成VFC-SAM。 n型硅上的VFC-SAM显示正的光响应,而p型硅上的VFC-SAM显示负的光响应。

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