Atmospheric pressure plasma functionalization of carbon nanotube dot-array with two-stage plasma treatments for the development of bio-chip sensors

T. Abuzairi, M. Nagatsu, N. R. Poespawati, R. W. Purnamaningsih, M. Okada, Yohei Mochizuki
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引用次数: 2

Abstract

An atmospheric pressure plasma jet (APPJ) technique was developed to functionalize amino groups to obtain plasma-functionalized carbon nanotube (CNT) dot-array as a precursor of biomolecules of the bio-chip sensor. To realize bio-chip sensors based on CNT, it is needed the proper control of their surface functionalization. An APPJ technique for CNT functionalization was implemented in the two-stages: (1) pre-treatment with by Ar gas -500 V dc bias and (2) post-treatment by Ar and NH3 gas mixture without substrate bias. Two-stages plasma treatment are important factors for performing surface functionalization in the APPJ, without any pre-treatment or when we only applying the post-treatment, no functionalization occur in the CNT dot-array.
大气压等离子体功能化碳纳米管点阵列的两级等离子体处理,用于生物芯片传感器的开发
采用常压等离子体射流(APPJ)技术对氨基进行功能化,得到等离子体功能化碳纳米管(CNT)点阵列,作为生物芯片传感器的生物分子前驱体。为了实现基于碳纳米管的生物芯片传感器,需要对其表面功能化进行适当的控制。应用APPJ技术实现了碳纳米管的功能化,分为两个阶段:(1)前处理为-500 V直流偏压的Ar气体,(2)后处理为无衬底偏压的Ar和NH3混合气体。两级等离子体处理是在APPJ中实现表面功能化的重要因素,不进行任何预处理或仅进行后处理时,CNT点阵列中不会发生功能化。
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