3nchemosensor response is studied. For thi'/> WO<inf>3</inf>Nanograined Chemosensor: a model of the sensing behavior
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WO3Nanograined Chemosensor: a model of the sensing behavior

机译:WO 3 纳米化学传感器:感测行为的模型

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In this work the influence of the grain dimension on WOn3nchemosensor response is studied. For this material the dielectric constant can assume very large values especially when increasing the operating temperature. As a consequence the Debye length can increase so that the sensor changes from a `large grain' behavior to a `small grain' one. This is true indeed for nano-grained powder. The sensitivity of nano-grains is higher but a complete depletion can occur saturating therefore the sensors. The case of spherical grains will be discussed in order to point out that, given the grain size, the variations of the material characteristics change the behavior. Different approximations are compared and discussed.
机译:在这项工作中,晶粒尺寸对WOn 3 nchemosensor响应进行了研究。对于这种材料,介电常数可以取非常大的值,尤其是在提高工作温度时。结果,德拜长度会增加,从而使传感器的行为从“大颗粒”变为“小颗粒”。对于纳米颗粒粉末确实是这样。纳米颗粒的灵敏度较高,但是会发生完全耗尽的现象,从而使传感器饱和。将讨论球形晶粒的情况,以指出在给定晶粒尺寸的情况下,材料特性的变化会改变其行为。比较和讨论了不同的近似值。

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