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Measurement of the Molecular Dipole Moment Using Active Microwave Thermography (AMT)
The Journal of Chemical Thermodynamics ( IF 2.2 ) Pub Date : 2020-12-01 , DOI: 10.1016/j.jct.2020.106245
G.S. Grubbs , A. Mirala , D. Bischof , M.T. Ghasr , K.M. Donnell

Abstract A method for implementing Active Microwave Thermography (AMT) for use in determining molecular dipole moments is reported. Specifically, the experimental setup along with a mathematical model for determining the dipole moment for deionized water is reported herein. The thermal and spatial resolution of the camera is shown to be of utmost importance in providing statistical and regional relevance, respectfully, of the properties of the material being studied. Deionized water in particular was studied in order to provide foundational knowledge for the veracity of using AMT in determining dipole moment values and representative values are reported herein. In order to extend the technique to more localized regions and composite systems, a more complex model and upgraded hardware are required.

中文翻译:

使用有源微波热成像 (AMT) 测量分子偶极矩

摘要 报道了一种实现用于确定分子偶极矩的主动微波热成像 (AMT) 的方法。具体而言,本文报告了实验装置以及用于确定去离子水偶极矩的数学模型。相机的热和空间分辨率被证明在提供所研究材料特性的统计和区域相关性方面至关重要。特别研究了去离子水,以便为使用 AMT 确定偶极矩值的准确性提供基础知识,本文报告了代表性值。为了将该技术扩展到更局部的区域和复合系统,需要更复杂的模型和升级的硬件。
更新日期:2020-12-01
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