Optical electronic nose based on porphyrin and phthalocyanine thin films for rice flavour classification

Rotthaporn Palasuek, S. Kladsomboon, T. Thepudom, T. Kerdcharoen
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引用次数: 10

Abstract

In this paper, we have developed an optoelectronic nose for rice classification based on measurement of changes in the optical absorption of organic thin films upon interactions with volatile analytes. The organic thin films based on metalloporphyrin (ZnTPP) and metallophthalocyanine (ZnOBPc) for gas sensing application were fabricated by spin coating technique. The optical properties of these thin films were tested with UV-VIS spectrophotometry. The surface topology of the films was observed by atomic force microscopy (AFM) technique which reveals that the film's topology is homogeneous with nano-scale thickness. The sensing behavior of the films toward various volatile compounds representing the simulated aroma rice, such as 5% v/v hexanal, 5% v/v octanal and deionized water, was investigated under N2 atmosphere at room temperature. The results have shown that ZnTPP and ZnOBPc thin film gas sensors can discriminate such volatile compounds. The optoelectronic nose was then applied to examine the odors of Jasmine rice, normal white rice and various of their mixtures. It was shown that ZnOBPc thin film can clearly classify the type of rice better than ZnTPP thin film. These results were confirmed by computational quantum mechanics based on density functional theory, which reveals that ZnOBPc molecule binds to the simulated rice aroma molecules better than ZnTPP molecule.
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基于卟啉和酞菁薄膜的光学电子鼻用于大米风味分类
在本文中,我们基于测量有机薄膜与挥发性分析物相互作用时光学吸收的变化,开发了一种用于水稻分类的光电鼻。采用自旋镀膜技术制备了气敏用金属卟啉(ZnTPP)和金属酞菁(ZnOBPc)有机薄膜。用紫外-可见分光光度法测试了这些薄膜的光学性能。利用原子力显微镜(AFM)技术观察了薄膜的表面拓扑结构,发现薄膜的拓扑结构在纳米尺度上是均匀的。在室温N2气氛下,研究了膜对5% v/v己醛、5% v/v辛醛和去离子水等代表模拟香气大米的挥发性化合物的传感行为。结果表明,ZnTPP和ZnOBPc薄膜气体传感器可以识别这些挥发性化合物。然后使用光电鼻来检测茉莉花米、普通白米以及它们的各种混合物的气味。结果表明,ZnOBPc薄膜比ZnTPP薄膜能更好地区分水稻的种类。基于密度泛函理论的计算量子力学证实了这些结果,表明ZnOBPc分子比ZnTPP分子更能与模拟水稻香气分子结合。
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