Fraunhofer Institute for Photonic Microsystems (IPMS), Center Nanoelectronic Technologies (CNT), An der Bartlake 5, 01109 Dresden, Germany.
Fraunhofer Institute for Photonic Microsystems (IPMS), Maria-Reiche-Str. 2, 01109 Dresden, Germany.
Sensors (Basel). 2023 Jul 4;23(13):6130. doi: 10.3390/s23136130.
In this study, a range of miniaturized Ag/AgCl reference electrodes with various layouts were successfully fabricated on wafer-level silicon-based substrates with metallic intermediate layers by precisely controlling the electrochemical deposition of Ag, followed by electrochemical chlorination of the deposited Ag layer. The structure, as well as the chemical composition of the electrode, were characterized with SEM & EDS. The results showed that the chlorination is very sensitive to the applied electric field and background solution. Potentiostatic chlorination, in combination with an adjusted mushroom-shaped Ag sealing deposition, enabled the formation of electrochemical usable Ag/AgCl layers. The stability of the electrodes was tested using open circuit potential (OCP) measurement. The results showed that the reference electrodes stayed stable for 300 s under 3 M KCl solution. The first stage study showed that the stability of the Ag/AgCl reference electrode in a chip highly depends on chip size design, chlorination conditions, and a further protection layer.
在这项研究中,通过精确控制 Ag 的电化学沉积,随后对沉积的 Ag 层进行电化学氯化,在晶圆级硅基衬底上成功制造了具有各种布局的一系列微型 Ag/AgCl 参比电极,其中使用了金属中间层。使用 SEM 和 EDS 对电极的结构和化学成分进行了表征。结果表明,氯化过程对施加的电场和背景溶液非常敏感。恒电位氯化与调整后的蘑菇形 Ag 密封沉积相结合,使得能够形成电化学可用的 Ag/AgCl 层。通过开路电位 (OCP) 测量测试了电极的稳定性。结果表明,在 3 M KCl 溶液中,参比电极在 300 s 内保持稳定。初步研究表明,Ag/AgCl 参比电极在芯片中的稳定性高度取决于芯片尺寸设计、氯化条件以及进一步的保护层。