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通过激光诱导正向转移制备用于检测铜离子的混合电极。

Fabrication of Hybrid Electrodes by Laser-Induced Forward Transfer for the Detection of Cu Ions.

作者信息

Bonciu Anca Florina, Andrei Florin, Palla-Papavlu Alexandra

机构信息

National Institute for Lasers, Plasma and Radiation Physics, Atomistilor Street 409, 077125 Magurele, Romania.

出版信息

Materials (Basel). 2023 Feb 20;16(4):1744. doi: 10.3390/ma16041744.

Abstract

Composites based on poly(3,4-ethylenedioxythiophene): poly(styrene sulfonate) (PEDOT:PSS)-graphene oxide (GO) are increasingly considered for sensing applications. In this work we aim at patterning and prototyping microscale geometries of PEDOT:PSS: GO composites for the modification of commercially available electrochemical sensors. Here, we demonstrate the laser-induced forward transfer of PEDOT:PSS: GO composites, a remarkably simple procedure that allows for the fast and clean transfer of materials with high resolution for a wide range of laser fluences (450-750 mJ/cm). We show that it is possible to transfer PEDOT:PSS: GO composites at different ratios (i.e., 25:75 %wt and 50:50 %wt) onto flexible screen-printed electrodes. Furthermore, when testing the functionality of the PEDOT:PSS: GO modified electrodes via LIFT, we could see that both the PEDOT:PSS: GO ratio as well as the addition of an intermediate release layer in the LIFT process plays an important role in the electrochemical response. In particular, the ratio of the oxidation peak current to the reduction peak current is almost twice as high for the sensor with a 50:50 %et PEDOT:PSS: GO pixel. This direct transfer methodology provides a path forward for the prototyping and production of polymer: graphene oxide composite based devices.

摘要

基于聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)-氧化石墨烯(GO)的复合材料在传感应用中越来越受到关注。在这项工作中,我们旨在对PEDOT:PSS:GO复合材料的微尺度几何形状进行图案化和原型制作,以用于市售电化学传感器的改性。在此,我们展示了PEDOT:PSS:GO复合材料的激光诱导正向转移,这是一种非常简单的方法,能够在很宽的激光能量密度范围(450-750 mJ/cm)内快速、干净地以高分辨率转移材料。我们表明,可以将不同比例(即25:75 %wt和50:50 %wt)的PEDOT:PSS:GO复合材料转移到柔性丝网印刷电极上。此外,当通过激光诱导正向转移测试PEDOT:PSS:GO修饰电极的功能时,我们发现PEDOT:PSS:GO的比例以及在激光诱导正向转移过程中添加中间释放层在电化学响应中都起着重要作用。特别是,对于具有50:50 %wt PEDOT:PSS:GO像素的传感器,氧化峰电流与还原峰电流的比值几乎高出一倍。这种直接转移方法为基于聚合物:氧化石墨烯复合材料的器件的原型制作和生产提供了一条前进的道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dd1/9959881/ab0d86fd2469/materials-16-01744-g001.jpg

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