Design of optical single mode splitter using ion exchange method for ammonia biosensor

M. Ariannejad, P. Menon, S. Shaari, A. M. Md Zain, A. Ehsan, F. Larki, A. Abedini, V. Retnasamy
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Abstract

One reasonable and cost-effective method to sense chemicals such as ammonia is to use optical waveguides. In this work, the simulation of an optical single-mode splitter waveguide was executed to detect ammonia on the sensing arm. OptiBPM and Ionex softwares were used for the waveguide and ion exchange simulations respectively. The deepest and widest optical channel was produced when a concentration of Ag+ of 0.2 moles/m3 was used at a temperature of 350°C for duration of 35 minutes. The optical splitter designed in OptiBPM showed a change in the optical power with the presence of ammonia on the gold-coated sensing arm of the splitter. Therefore, the thermal ion change method is an alternative cost-effective method for the fabrication of optical biosensors.
离子交换法氨生物传感器光学单模分路器的设计
一种合理且经济有效的方法来检测化学物质,如氨,是使用光波导。在这项工作中,模拟了一个光学单模分光波导来检测传感臂上的氨。利用OptiBPM和Ionex软件分别进行了波导和离子交换模拟。当银离子浓度为0.2 mol /m3,温度为350℃,时间为35分钟时,产生的光通道最深、最宽。在OptiBPM中设计的分光器显示了当分光器的镀金传感臂上有氨存在时,光功率发生了变化。因此,热离子变化法是制造光学生物传感器的一种具有成本效益的替代方法。
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