Sampath Divya, Narasimhan Venkateswaran
Department of Biomedical Engineering, Sri Sivasubramaniya Nadar College of Engineering (Autonomous), Old Mahabalipuram Road, Kalavakkam, Chennai 603110, Tamil Nadu, India.
ACS Omega. 2024 Feb 12;9(8):9625-9632. doi: 10.1021/acsomega.3c09589. eCollection 2024 Feb 27.
This paper presents the design and analysis of a one-dimensional defect layer photonic crystal (1D-DLPC) sensor for the assessment of the purity of chemical solvents with enhanced accuracy. Chemical solvents are frequently used in chemical processes as reaction mediums. It is essential to ascertain its purity since impurities can significantly affect the outcome of the reaction. The structure of the proposed one-dimensional defect layer photonic crystal sensor consists of a defect layer sandwiched between alternate layers of ZnO and SiO organized with a certain periodicity. It has been shown that the localized defect modes inside the structure can detect minute refractive index changes based on the degree of impurity of chemical solvents. Simulation studies have been performed through the transfer matrix method (TMM) and the performance of the design is evaluated using several metrics such as sensitivity, full width at half-maximum, figure of merit, quality factor, and dynamic range. Results indicate that the designed one-dimensional defect layer photonic crystal sensor has a significantly high efficiency and is suitable for detecting impure solvents.
本文介绍了一种用于评估化学溶剂纯度的一维缺陷层光子晶体(1D-DLPC)传感器的设计与分析,其具有更高的精度。化学溶剂在化学过程中经常用作反应介质。确定其纯度至关重要,因为杂质会显著影响反应结果。所提出的一维缺陷层光子晶体传感器的结构由夹在以一定周期性排列的ZnO和SiO交替层之间的缺陷层组成。研究表明,结构内部的局域缺陷模式可以根据化学溶剂的杂质程度检测微小的折射率变化。通过传输矩阵法(TMM)进行了模拟研究,并使用灵敏度、半高宽、品质因数、品质因子和动态范围等多个指标对设计的性能进行了评估。结果表明,所设计的一维缺陷层光子晶体传感器具有显著的高效率,适用于检测不纯溶剂。