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Molecular layer deposition of APTES on silicon nanowire biosensors: Surface characterization, stability and pH response

机译:硅纳米线生物传感器上APTES分子层沉积:表面表征,稳定性和pH响应

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摘要

We report the use of molecular layer deposition (MLD) for depositing 3-aminopropyltriethoxysilane (APTES) on a silicon dioxide surface. The APTES monolayer was characterized using spectroscopic ellip-sometry, contact angle goniometry, and atomic force microscopy. Effects of reaction time of repeating pulses and simultaneous feeding of water vapor with APTES were tested. The results indicate that the synergistic effects of water vapor and reaction time are significant for the formation of a stable mono-layer. Additionally, increasing the number of repeating pulses improved the APTES surface coverage but led to saturation after 10 pulses. In comparing MLD with solution-phase deposition, the APTES surface coverage and the surface quality were nearly equivalent. The hydrolytic stability of the resulting films was also studied. The results confirmed that the hydrolysis process was necessary for MLD to obtain stable surface chemistry. Furthermore, we compared the pH sensing results of Si nanowire field effect transistors (Si NWFETs) modified by both the MLD and solution methods. The highly repeatable pH sensing results reflected the stability of APTES monolayers. The results also showed an improved pH response of the sensor prepared by MLD compared to the one prepared by the solution treatment, which indicated higher surface coverage of APTES.
机译:我们报告使用分子层沉积(MLD)在二氧化硅表面上沉积3-氨丙基三乙氧基硅烷(APTES)。使用光谱椭圆仪,接触角测角仪和原子力显微镜对APTES单层膜进行表征。测试了重复脉冲的反应时间以及同时向APTES输送水蒸气的影响。结果表明,水蒸气和反应时间的协同作用对于形成稳定的单层是重要的。另外,增加重复脉冲的数量可以改善APTES的表面覆盖率,但会导致10个脉冲后达到饱和。在将MLD与溶液相沉积进行比较时,APTES的表面覆盖率和表面质量几乎相等。还研究了所得膜的水解稳定性。结果证实水解过程对于MLD获得稳定的表面化学是必要的。此外,我们比较了通过MLD和溶液方法改性的Si纳米线场效应晶体管(Si NWFET)的pH感测结果。高度可重复的pH传感结果反映了APTES单层的稳定性。结果还显示,与通过固溶处理制备的传感器相比,通过MLD制备的传感器的pH响应有所改善,这表明APTES的表面覆盖率更高。

著录项

  • 来源
    《Applied Surface Science》 |2014年第15期|202-208|共7页
  • 作者单位

    Department of Electrical Engineering, University of Texas at Dallas, Richardson, TX 75080, United States;

    Department of Materials Science & Engineering, University of Texas at Dallas, Richardson, TX 75080, United States;

    Department of Electrical Engineering, University of Texas at Dallas, Richardson, TX 75080, United States;

    Department of Materials Science & Engineering, University of Texas at Dallas, Richardson, TX 75080, United States;

    Department of Electrical Engineering, University of Texas at Dallas, Richardson, TX 75080, United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SAMs; MLD; Si nanowires FETs; Hydrolysis stability; pH sensing;

    机译:SAM MLD;Si纳米线FET;水解稳定性;pH感应;

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