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Conducting carbon films with covalent binding sites for biomolecule attachment

机译:用共价结合位点进行生物分子附着的碳膜

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摘要

We report an electrically conductive carbon film with controllable hydrophilic properties that offers a covalent binding surface containing radicals for biomolecule attachment without using chemical linkers. Films were deposited from an acetylene-containing plasma using plasma immersion ion implantation during growth and subsequently annealed under vacuum. Electrical conductivity, spin density, contact angle, surface energy, surface composition, and covalent binding capability were studied as a function of annealing temperature, revealing three distinct regions. In the first region, surface energy is dominated by polar groups. In the second region, the polar groups are expelled, creating unpaired electrons that dominate the polar component of the surface energy. In the third region, the electrical conductivity rises and the polar component of surface energy falls as the unpaired electrons recombine, leading to an optimum combination of surface energy, spin density, and electrical conductivity for biological applications. It is proposed that persistent radicals are responsible for both high wettability and covalent binding properties. Covalently attached enzyme molecules on the C film can resist stringent washing with detergents. The C films offer the functions of conducting polymers, but with the added features of controllable wettability and a covalent binding capability. Published under license by AIP Publishing.
机译:我们报告了一种具有可控亲水性的导电碳膜,其提供了具有用于生物分子附件的基团的共价结合表面而不使用化学接头。在生长期间使用等离子体浸没离子注入,从含等离子体浸渍离子注入,随后在真空下退火,膜从含乙炔的血浆沉积薄膜。作为退火温度的函数研究了导电性,旋转密度,接触角,表面能,表面组合物和共价结合能力,揭示了三个不同的区域。在第一区域中,表面能由极性组支配。在第二区域中,极性基团被排出,从而产生构成构成表面能的极性分量的未配对电子。在第三区域中,电导率升高和表面能的极性分量作为未配对的电子重组,导致表面能,自旋密度和用于生物应用的电导率的最佳组合。提出,持续自由基负责高润湿性和共价结合性。 C膜上的共价附着的酶分子可以用洗涤剂抵抗严格的洗涤。 C薄膜提供导电聚合物的功能,但是具有可控润湿性和共价结合能力的附加特征。通过AIP发布在许可证下发布。

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  • 来源
    《Journal of Applied Physics》 |2019年第7期|075302.1-075302.11|共11页
  • 作者单位

    Univ Sydney Sch Phys Appl & Plasma Phys Grp Sydney NSW 2006 Australia;

    RMIT Univ Sch Sci Melbourne Vic 3001 Australia;

    RMIT Univ Sch Sci Melbourne Vic 3001 Australia;

    La Trobe Univ Dept Chem & Phys CMSS Melbourne Vic 3086 Australia;

    RMIT Univ Sch Sci Melbourne Vic 3001 Australia;

    RMIT Univ Sch Sci Melbourne Vic 3001 Australia;

    Univ Sydney Sch Phys Appl & Plasma Phys Grp Sydney NSW 2006 Australia;

  • 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
  • 中图分类
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