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Implementation of PVA-Nanofibers Heat Absorption Monitoring Sensor for Ultrasensitive Detection of 2,4-Dinitrotoluene

机译:用于2,4-二硝基甲苯超灵敏检测的PVA-纳米吸热监测传感器的实现

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摘要

In this paper, a PVA-nanofibers heat absorption monitoring (PVA-HAM) sensor is fabricated by developing the HAM sensor to detect 2,4-Dinitrotoluene (DNT). Polyvinyl alcohol (PVA) has a high melting point, electrospinning capability, and ability to form the hydrogen bond with DNT. Thus, a thin layer of PVA nanofibers is implemented on the active area of the sensor through electrospinning method, which improves the absorption ability and the sensitivity of the PVA-HAM sensor due to the formation of the hydrogen bond between PVA and DNT molecules, as well as the huge surface to volume ratio of PVA nanofibers. Uniform nanofibers with the average fiber diameter of 97 nm can be obtained using 9.1 wt% PVA solution and controlling electrospinning conditions. The surface morphology of PVA-HAM sensor demonstrates that the absorption area has increased 3.87 times compared with bare HAM sensor. Experimental results show that the PVA-HAM sensor is able to detect DNT about 13.27 ppb in 80 ms, which indicates that the limit of detection has improved 3.77 times than the bare sensor. In addition, the fabricated sensor has high repeatability and reproducibility, and also it has a good selectivity to DNT compared to common volatile chemicals.
机译:通过开发用于检测2,4-二硝基甲苯(DNT)的HAM传感器,制造了PVA纳米纤维热吸收监测(PVA-HAM)传感器。聚乙烯醇(PVA)具有高熔点,静电纺丝能力以及与DNT形成氢键的能力。因此,通过静电纺丝法在传感器的活性区域上实现了一层薄薄的PVA纳米纤维,由于PVA和DNT分子之间形成了氢键,因此提高了PVA-HAM传感器的吸收能力和灵敏度。以及PVA纳米纤维的巨大的表面体积比。使用9.1 wt%的PVA溶液并控制静电纺丝条件,可以获得平均纤维直径为97 nm的均匀纳米纤维。 PVA-HAM传感器的表面形态表明,与裸HAM传感器相比,吸收面积增加了3.87倍。实验结果表明,PVA-HAM传感器能够在80 ms内检测到约13.27 ppb的DNT,这表明检测限比裸传感器提高了3.77倍。另外,所制造的传感器具有高重复性和再现性,并且与普通挥发性化学物质相比,其对DNT具有良好的选择性。

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