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Room-temperature highly sensitive and selective NH3 gas sensor using vertically aligned WS2 nanosheets

机译:使用垂直排列的WS2纳米片的室温高灵敏度和选择性NH3气体传感器

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摘要

Here, we report the room temperature (35 degrees C) NH3 gas sensor device made from WS2 nanosheets obtained via a facile and low-cost probe sonication method. The gas-sensing properties of devices made from these nanosheets were examined for various analytes such as ammonia, ethanol, methanol, formaldehyde, acetone, chloroform, and benzene. The fabricated gas sensor is selective towards NH3 and exhibits excellent sensitivity, faster response, and recovery time in comparison to previously reported values. The device can detect NH3 down to 5 ppm, much below the maximum allowed workspace NH3 level (20 ppm), and have a sensing response of the order of 112 with a response and recovery time of 54 s and 66 s, respectively. On the other hand, a sensor made from nanostructures has a bit longer recovery time than a device made from nanosheets. This was attributed to the fact that NH3 molecules adsorbed on the surface site and those trapped in between WS2 layers may have different adsorption energies . In the latter case, desorption becomes difficult and may give rise to slower recovery as noticed. Further, stiffened Raman modes upon exposure to NH3 reveal strong electron-phonon interaction between NH3 and the WS2 channel. The present work highlights the potential use of scaled two-dimensional nanosheets in sensing devices and particularly when used with inter-digitized electrodes, may offer enhanced performance.
机译:在这里,我们报告了室温(35°C)NH3气体传感器装置,该装置由WS2纳米片制成,通过简单且低成本的探针超声处理方法获得。研究了由这些纳米片制成的器件在氨、乙醇、甲醇、甲醛、丙酮、氯仿和苯等各种分析物中的气敏特性。制造的气体传感器对NH3具有选择性,与先前报道的值相比,具有出色的灵敏度、更快的响应速度和恢复时间。该器件可以检测到低至 5 ppm 的 NH3,远低于最大允许工作空间 NH3 水平 (20 ppm),并且具有 112% 量级的传感响应,响应和恢复时间分别为 54 秒和 66 秒。另一方面,由纳米结构制成的传感器比由纳米片制成的设备具有更长的恢复时间。这归因于吸附在表面位点的NH3分子和被困在WS2层之间的NH3分子可能具有不同的吸附能。在后一种情况下,解吸变得困难,并可能导致恢复速度变慢,如上所述。此外,暴露于NH3时的硬化拉曼模式揭示了NH3和WS2通道之间强烈的电子-声子相互作用。本工作强调了缩放二维纳米片在传感设备中的潜在用途,特别是当与互数字化电极一起使用时,可能会提供增强的性能。

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