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Electrode compositions for laser patterned conductometric sensors

机译:激光图案化电导率传感器的电极组合物

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An electrode created with maskless metallization of Cu tracks ablated with laser direct structuring on a liquid crystal polymer can never achieve a quality comparable to sputtered layers on silicon, but has the advantage of being molded into complex 3D structures. As these electrodes on molded interconnected devices can function as conductometric sensors capable of detecting ion changes in a liquid it is of high interest to characterize a variety of metal systems in terms of electrode performance. The sensor models Cu|Ni-P|Pd|Au, Cu|Ni-P|Au, Cu|Pd|Au, Cu|Pd and Cu|Ag were tested for stability in an aqueous environment, and for sensitivity to detect a change in the conductance of a liquid environment. For both tests, the Cu|Pd|Au electrode had the most stable impedance and sensitivity, with the smallest variance (10 samples of each electrode composition pair tested). Inspection by Scanning Electron Microscope with Energy Dispersive X-ray spectroscopy explained this result.
机译:在液晶聚合物上通过激光直接结构烧蚀而形成的无掩模金属化铜迹线所产生的电极永远无法获得与硅上溅射层相当的质量,但具有被模制成复杂的3D结构的优势。由于模制互连设备上的这些电极可用作能够检测液体中离子变化的电导传感器,因此非常有必要根据电极性能表征各种金属系统。测试了传感器模型Cu | Ni-P | Pd | Au,Cu | Ni-P | Au,Cu | Pd | Au,Cu | Pd和Cu | Ag在水环境中的稳定性以及检测变化的敏感性在液体环境中传导。在这两个测试中,Cu | Pd | Au电极的阻抗和灵敏度都最稳定,方差最小(测试的每个电极组合物对有10个样品)。通过具有能量色散X射线光谱学的扫描电子显微镜的检查解释了该结果。

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