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Comparison of Different Oxidation Techniques for Biofunctionalization of Pyrolyzed Carbon

机译:热氧化碳生物功能化不同氧化技术的比较

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Pyrolyzed carbon microano-structures have great potential as functional units in biosensors where biofunctionalization of the carbon surface is a requisite. In this work, we present a comparison of four different oxidation pretreatments, i.e. vacuum ultraviolet (VUV), electrochemical activation (EA), oxygen reactive ion etching (RIE), and ultraviolet/ozone (UV/O~3) pretreatments on pyrolyzed carbon surface. X-ray photoelectron spectroscopy (XPS) results indicated that all the oxidation techniques except UV/O~3 pretreatment yielded identical oxidation levels. The percentage of the carboxyl group which is suitable for covalent attachment of amine terminated biomolecules increased with pretreatment time, and was highest in the case of VUV pretreatment (15%) followed by oxygen RIE (12.5%), EA pretreatments (12.5%) and UV/O~3 pretreatment showed significantly lower carboxyl group percentage at 6%. This study helps to optimize the surface functionalization conditions for covalent binding of bioreceptors on the pyrolyzed carbon substrate for biosensing applications.
机译:热解碳微/纳米结构作为生物传感器中功能单元的潜力很大,其中碳表面必须进行生物功能化。在这项工作中,我们对四种不同的氧化预处理进行了比较,分别是对热解碳进行真空紫外线(VUV),电化学活化(EA),氧反应离子刻蚀(RIE)和紫外线/臭氧(UV / O〜3)预处理表面。 X射线光电子能谱(XPS)结果表明,除UV / O〜3预处理外,所有氧化技术均产生相同的氧化水平。适于胺键合的生物分子共价连接的羧基百分比随预处理时间的增加而增加,在VUV预处理(15%)其次是氧RIE(12.5%),EA预处理(12.5%)和UV / O〜3预处理的羧基百分比明显降低,为6%。这项研究有助于优化表面功能化条件,以实现生物受体在热解碳基质上生物受体共价结合。

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