swcnts / PYA分子动力学模拟在传感器中的应用

Ali S. Hasan, A. Mousa, Abdullah R. Abdul Hussein
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引用次数: 0

摘要

传感器广泛应用于医疗,一般工业,传感器用于几种日常电子产品,如触摸感应移动屏幕和触摸时变暗或变亮的灯,以及大多数人的更多应用。传感器至关重要,它更准确,分析更快。由于微机械和用户友好型微控制器平台的发展,传感器的应用已经超越了温度、压力和流量监测。研究了单壁碳纳米管/聚乙烯醇(SWCNT/PVA)的物理模型,并将其应用于传感器中。结构、电学和传感器特性都已经研究过了。结果表明,设计样品的总能量很低,这使得它们之间的原子分布不对称,一致性很好。结果证实了所实现设计的准确性,以及所用材料在键长和能量方面的化学和物理相容性。总能量是2600到2700电子伏特。而swcnts与PVA的能隙分别为0.075和4.55,差异非常大,并且在设计时,端口非常接近swcnts的能隙,这表明电子连接成功且优秀。此外,所研究的传感器的电子硬度低,而弹性高,这是获得成功的应力传感器所期望的结果。由于其极高的灵敏度和选择性,除了快速反应和恢复外,swcnts在电子学中最有潜力的用途之一是传感器的使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular Dynamics Simulation of SWCNT / PYA in sensors application
The sensor Uses wide in a range of applications including medical, general industrial, sensors are utilized in several daily electronics such as Touch-sensitive mobile screens and lights that dim or brighten when touched, as well as many more applications for most people. Sensors are critical, which is more accurate and makes quicker analysis. Because of developments in micromachinery and user-friendly microcontroller platforms, sensor applications have surpassed temperature, pressure, and flow monitoring. The physical modeling of Single-walled carbon nanotube/Poly Vinyl Alcohol (SWCNT/PVA) was researched and applied in sensor applications in this study. The structural, electrical, and sensor properties have all been studied. The results showed that the total energy of the designed samples was of a very low value, and this gives asymmetrical distribution and good agreement of the atoms among them. The results confirmed the accuracy of the implemented design and the chemical and physical compatibility between the materials used in terms of bond lengths and energies. It gave total energy of 2600 to 2700 eV. While the difference was very large between the energy gap of SWCNT and PVA 0.075 and 4.55, respectively, and when designing, the port was very close to the SWCNT energy gap, and this indicates a successful and excellent electronic connection. Furthermore, the electronic hardness was low, while the elasticity was high for the studied sensors, which is the desired result for obtaining successful stress sensors. With its excessive sensitivity and selectivity, in addition to rapid reaction and recovery, One of the most potential uses of SWCNT in electronics is the use of sensors.
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