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Self-assembled monolayers of poly(ethylene glycol) siloxane as a resist for ultrahigh-resolution electron beam lithography on silicon oxide

机译:聚(乙二醇)硅氧烷的自组装单分子层作为抗蚀剂,用于氧化硅上的超高分辨率电子束光刻

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摘要

Self-assembled monolayers of 2-[methoxypoly(ethyleneoxy)propyl]-trimethoxysilane (Si-PEG) reduce the nonspecific binding between silicon oxide surfaces and a variety of biomolecules. The film can be patterned by electron beam lithography at 30 nm resolution. Optimal electron beam lithography exposure conditions are 4 nC/cm at 75 keV. Exposed regions of the PEG film become negatively charged and less resistant to biomolecule binding, which leads to selective adhesion of biomolecules. The patterned film acts as a template for biomolecule attachment, while the intact PEG background is strongly resistant to nonspecific binding. Binding selectivities of up to 26:1 were observed for patterning cowpea mosaic virus, Salmonella phage P22 tailspike protein and poly(lysine) at 30 nm linewidths.
机译:2- [甲氧基聚(乙烯氧基)丙基]-三甲氧基硅烷(Si-PEG)的自组装单层减少了氧化硅表面与各种生物分子之间的非特异性结合。可以通过电子束光刻以30 nm的分辨率对薄膜进行构图。在75 keV时,最佳电子束光刻曝光条件为4 nC / cm。 PEG薄膜的暴露区域带负电,对生物分子结合的抵抗力降低,这导致生物分子的选择性粘附。图案化的薄膜充当生物分子附着的模板,而完整的PEG背景则强烈抵抗非特异性结合。对于在30 nm线宽处构图cow豆花叶病毒,沙门氏菌噬菌体P22尾钉蛋白和聚赖氨酸,观察到高达26:1的结合选择性。

著录项

  • 来源
    《Journal of Vacuum Science & Technology》 |2009年第5期|2292-2300|共9页
  • 作者单位

    Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556;

    Department of Electrical Engineering, University of Notre Dame, Notre Dame, Indiana 46556;

    Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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