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Ammonia Sensing Characteristics of a Platinum (Pt) Hybrid Structure/GaN-Based Schottky Diode

机译:铂(PT)混合结构/ GaN的肖特基二极管的氨感传感特性

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A hybrid structure of platinum nanoparticles (Pt NPs) and a Pt thin film are employed to fabricate a new Pt NP/Pt thin film/GaN-based Schottky diode-type ammonia sensor. Pt NPs are formed by a drop coating and UV illumination approach. The increased surface-area-to-volume ratio and "spillover" effect of Pt NPs are beneficial in ammonia sensing. Due to the synergistic catalytic activity of Pt NPs and Pt thin film, the studied device shows good ammonia sensing properties, including a high sensing response of 522.1 under 1000-ppm NH3/air gas at 473 K and an extremely low detecting level of 0.4-ppm NH3/air. A thermodynamic analysis is employed to study the related ammonia sensing mechanism. Furthermore, a Kalman filter and the related algorithm are introduced to effectively reduce the redundant data without affecting the original sensing results. Based on the good performance and advantages of a relatively simple structure and easy fabrication, the studied device is promising for ammonia sensing and wireless transmission applications.
机译:使用铂纳米颗粒(Pt NPS)和Pt薄膜的杂化结构来制造新的Pt NP / Pt薄膜/ GaN基二极管型氨传感器。 Pt NP通过滴涂层和UV照明方法形成。增加的表面积到体积比和“溢出物”效应对氨感测有益。由于Pt NPS和PT薄膜的协同催化活性,所研究的装置显示出良好的氨感测性能,包括在473k的1000ppm NH 3 /气体下的522.1的高感测响应,并且极低的检测水平为0.4- PPM NH3 /空气。使用热力学分析来研究相关的氨感测机制。此外,引入了卡尔曼滤波器和相关算法以有效地减少冗余数据而不影响原始感测结果。基于结构良好的结构和易于制造的良好性能和优点,研究装置对氨感测和无线传输应用有前途。

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