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Pt-NiCo nanostructures with facilitated electrocatalytic activities for sensitive determination of intracellular thiols with long-term stability

  • Feng Zhang
  • , Ming Wen
  • , Mingzhu Cheng
  • , Di Liu
  • , Anwei Zhu
  • , Yang Tian*
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

A Pt-NiCo nanomaterial has been synthesized for developing the sensitive electrochemical determination of biological thiols that include L-cysteine (CySH), homocysteine (HCySH), and gluthione (GSH) with high sensitivity and long-term stability, in which the Pt nanoparticles are well supported on amorphous NiCo nanofilms. The electrochemical oxidation of thiols has been successfully facilitated on the optimized Pt-NiCo nanostructures, that is, two oxidation peaks of CySH have been clearly observed at potentials of + 0.06 and +0.45V. The experimental results demonstrate that the first peak for CySH oxidation may be attributed to a direct oxidation from CySH to Lcystine (CySSCy), whereas the second peak possibly results from a sequential oxidation from CySSCy to cysteic acid (CySO3H), together with a direct oxidation of CySH into CySO3H. The enhanced electrocatalytic activities at the Pt23-NiCo nanostructures have provid-ed a methodology to determine thiols at a very low potential of 0.0 V with relatively high sensitivity (637 nAμMcm-2), a low detection limit (20 nM), and a broad linear range. The striking analytical performance, together with the characteristic properties of the Pt-NiCo nanomaterial itself, including long-term stability and strong antipoisoning ability, has established a reliable and durable approach for the detection of thiols in liver cancer cells, Hep G2.

源语言英语
页(从-至)11115-11120
页数6
期刊Chemistry - A European Journal
16
36
DOI
出版状态已出版 - 24 9月 2010
已对外发布

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    可持续发展目标 3 良好健康与福祉

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