Atmospheric pressure plasma treated carbon fibre weave: A flexible approach to wound monitoring

Atmospheric pressure plasma treated carbon fibre weave: A flexible approach to wound monitoring
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DOI:
10.1016/j.elecom.2013.04.024
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发表时间:
2013-04
影响因子:
5.4
通讯作者:
J. Phair;James Davis;C. Leach;M. Cardosi
J. Phair;James Davis;C. Leach;M. Cardosi
中科院分区:
工程技术3区
文献类型:
--
作者:
J. Phair;James Davis;C. Leach;M. Cardosi

文献摘要

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大气压等离子体处理已被研究为用于制造智能绷带的活化碳纤维线的快速手段。亚铁氰化物和钌六胺被用作氧化还原探针,以评估等离子体暴露时间对原型伤口敷料中材料的电分析性能的影响。在碳界面处的钌的离子交换被观察到,并归因于等离子体诱导的表面羧基的产生。这些具有改善电子转移动力学和表面润湿的效果。通过检查全血中的直接反应,严格评估了改良材料用于伤口监测的适用性。
Atmospheric pressure plasma processing has been investigated as a rapid means of activating carbon fibre thread for use in the manufacture of smart bandages. Ferrocyanide and ruthenium hexamine were used as redox probes to assess the influence of plasma exposure time on the electroanalytical performance of material to be incorporated within prototype wound dressings. Ion exchange of the ruthenium at the carbon interface was observed and was attributed to the plasma induced creation of surface carboxyl groups. These had the effect of improving electron transfer kinetics and surface wetting. The applicability of the modified material for wound monitoring was critically assessed through examining the direct response in whole blood.