基于碳纳米管封装的红外探测器

K. Lai, N. Xi, Jiangbo Zhang, Guangyong Li, Hongzhi Chen
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引用次数: 15

摘要

提出了一种基于聚对二甲苯C层的碳纳米管红外传感器芯片的制备和封装方法。碳纳米管对近红外辐射敏感,可作为红外传感元件。采用聚对二甲苯薄膜作为保形无针孔绝缘层和氧屏障,在检测过程中保护碳纳米管。研究了聚对二甲苯C层的红外透射特性及其对碳纳米管传感器响应的影响。实验结果表明,未加对二甲苯保护的碳纳米管传感器在红外激光照射下发生电流变化。当在碳纳米管传感器和红外激光源之间放置对二甲苯C薄膜衬底时,传感电流百分比变化减小。揭示了聚对二甲苯C薄膜的红外吸收行为。我们还发现,红外吸收水平与聚二甲苯层的厚度成正比。制备了聚对二甲苯封装的碳纳米管传感器,并对其进行了近红外辐射测试。初步结果表明,聚对二甲苯涂层的碳纳米管红外探测器能够感知红外辐射,并具有可重复的响应。此外,通过测量传感器芯片长时间被干冰包围时的IV特性,考察其在水分环境下的长期稳定性。因此,封装工艺可以制造出性能更稳定可靠的基于碳纳米管的红外传感器阵列。
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Packaging carbon nanotube based infrared detector
We present a fabrication and packaging method of carbon nanotube (CNT) based infrared (IR) sensor chip using parylene C layer. CNT was found to be sensitive under near IR radiation and it could be used as IR sensing element. Parylene C thin film was used as a conformal pin hole free insulating layer and oxygen barrier for protecting CNTs during the detection. The IR transmission properties of parylene C layer and the influence on the response of the CNT sensor were studied. Our experimental results showed that the CNT sensor without parylene C protection exhibited current change when it was exposed to the IR laser. The sensing current percentage changes decreased when the parylene C thin film substrate was placed between the CNT sensor and IR laser source. It implied the IR absorption behavior of parylene C thin film. We also found that the IR absorption level is proportional to the thickness of the parylene C layer. The parylene C packaged CNT sensor was fabricated and tested under near IR radiation. Preliminary results indicated that the CNT IR detector coated with parylene C was capable of sensing IR radiation and exhibited repeatable response. Moreover, the IV characteristic of the sensor chip was measured when it was surrounded by dry ice for long time to investigate its long term stability under moisture environment. Therefore, the packaging process can become possible to fabricate a CNT based IR sensor array which possesses more stable and reliable performance.
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