激光诱导聚酰亚胺碳化的柔性碳基尿素传感器

Emil R. Mamleyev, N. Nordin, S. Heissler, K. Länge, Neil MacKinnon, Swati Sharma
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引用次数: 4

摘要

热解模式聚合物是一种广泛的技术,以获得小型化的碳结构和设备。该工艺在≥900°C下进行,这限制了器件制造的刚性,耐高温衬底,如硅。我们通过控制激光写入在商用聚酰亚胺薄膜上获得碳图案,这引起了类似热解的效应,并导致聚酰亚胺部分转化为导电的高表面积碳材料。这些柔性碳模式是用显微镜和光谱技术表征的,并被用作壳聚糖电沉积的电极。随后,将脲酶固定在壳聚糖膜上,该复合电极组件用于ph基尿素检测。这种无光刻、低成本和快速的制造工艺能够在微到毫米范围内形成任何所需形状的聚酰亚胺表面图案。电沉积壳聚糖薄膜可用于多种酶和化学成分的固定化,用于生物传感应用。
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Flexible Carbon-based Urea Sensor by Laser Induced Carbonisation of Polyimide
Pyrolysis of patterned polymers is a widespread technique for obtaining miniaturised carbon structures and devices. This process is performed at ≥ 900°C, which limits the device fabrication to rigid, high-temperature resistant substrates such as silicon. We obtain carbon patterns on commercially available polyimide films by a controlled laser writing, which induces a pyrolysis-like effect and causes the partial conversion of the polyimide into an electrically conductive, high-surface area carbon material. These flexible carbon patterns are characterised using microscopic and spectroscopic techniques, and are used as electrodes for the electrodeposition of chitosan. Subsequently, urease enzyme is immobilised on the chitosan film, and this composite electrode assembly is used for pH-based urea detection. This lithography-free, low-cost, and rapid fabrication process is capable of polyimide surface patterning with any desired shape in the micro- to millimeter range. Electrodeposited chitosan films can be used for the immobilisation of a variety of enzymes and chemical moieties for biosensing applications.
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