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Direct-Write of Sensor Devices by a Laser Forward Transfer Technique

机译:通过激光转移技术直接写传感器设备

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摘要

The use of direct-write techniques in the design and manufacture of sensor devices provides a flexible approach for next generation commercial and defense sensor applications. Using a laser forward transfer technique, we have demonstrated the ability to rapidly prototype temperature, biological and chemical sensor devices. This process, known as matrix assisted pulsed laser evaporation direct-write or MAPLE DW is compatible with a broad class of materials ranging from metals and electronic ceramics to chemoselective polymers and biomaterials. Various types of miniature sensor designs have been fabricated incorporating different materials such as metals, polymers, biomaterials or composites as multilayers or discrete structures on a single substrate. The MAPLE DW process is computer controlled which allows the sensor design to be easily modified and adapted to any specific application. To illustrate the potential of this technique, a functional chemical sensor system is demonstrated by fabricating all the passive and sensor components by MAPLE DW on a polyimide substrate. Additional devices fabricated by MAPLE DW including biosensors and temperature sensors and their performance are shown to illustrate the breadth of MAPLE DW and how this technique may influence current and future sensor applications.
机译:在传感器设备的设计和制造中使用直接写技术为下一代商业和防御传感器应用提供了灵活的方法。使用激光转移技术,我们已经证明了快速原型温度,生物和化学传感器装置的能力。该方法称为矩阵辅助脉冲激光蒸发直接写入或枫木DW与一类广泛的材料兼容,从金属和电子陶瓷到化学选择性聚合物和生物材料。已经制造了各种类型的微型传感器设计,其掺入不同的材料,例如金属,聚合物,生物材料或复合材料,作为单个基板上的多层或离散结构。枫木DW过程是计算机控制,允许传感器设计轻松修改并适应任何特定应用。为了说明这种技术的潜力,通过在聚酰亚胺基板上制造所有无源和传感器部件来证明功能化学传感器系统。由枫木DW制造的附加装置包括生物传感器和温度传感器及其性能,显示了枫木DW的宽度以及该技术如何影响电流和未来的传感器应用。

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