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A novel highly sensitive gas ionization sensor for ammonia detection

机译:一种用于氨气检测的新型高灵敏度气体电离传感器

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A novel highly sensitive gas ionization sensor for ammonia detection in ambient air is introduced in this paper. Carbon nanotubes (CNTs) grown on silicon substrate were incorporated to fabricate a gas ionization sensor. Application of a positive bias to the CNTs generates electric fields sufficiently to field-ionize passing gas-phase molecular and initiate a prebreakdown current. When the CNTs film is configured as the cathode, secondary electrons repelled away from the CNTs tips into the gap spacing make more ionizing collisions and also initiate a prebreakdown current. By monitoring the prebreakdown current, the gas ionization sensor was demonstrated to be capable of ionizing and detecting the ammonia and with a linear response over the entire range from 1 to 160 ppm ammonia in air. The sensitivity mechanism of the gas ionization sensor was also discussed in detail. The sensitivity and selectivity of the gas ionization sensor to the gases is not only dependent on its ionization energy but also its electric dipole moment. The novel CNTs-based gas ionization sensor described here exhibits high accuracy, repeatability and stability. The sensor is promising for use in various fields.
机译:本文介绍了一种用于环境空气中氨气检测的新型高灵敏度气体电离传感器。掺入在硅衬底上生长的碳纳米管(CNT)以制造气体电离传感器。向CNT施加正偏压会产生足以使通过的气相分子电离并引发预击穿电流的电场。当将CNTs薄膜配置为阴极时,从CNTs排斥而来的二次电子尖端进入间隙间隔,从而产生更多的电离碰撞,并引发预击穿电流。通过监测预击穿电流,证明气体电离传感器能够电离和检测氨,并且在空气中1至160 ppm氨的整个范围内具有线性响应。还详细讨论了气体电离传感器的灵敏度机制。气体电离传感器对气体的灵敏度和选择性不仅取决于其电离能,还取决于其电偶极矩。本文所述的新型基于CNTs的气体电离传感器具有很高的准确性,可重复性和稳定性。该传感器有望用于各种领域。

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