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Updated: Jan 20, 2026

Aerosol-assisted Chemical Vapor Deposition of Metal Oxide Structures: Zinc Oxide Rods
Published on: September 14, 2017
Heating Effect on the Liquid-Crystalline Octakis(hexylthio)zinc(II) Phthalocyanine Thin Film Sensor for the Detection
Zeynep Özer1, Gizem Gümüşgöz Çelik1, Inci Capan2
1Gebze Technical University, Science Faculty, Chemistry Department, 41400 Gebze, Kocaeli Turkey.
Abstract:
A liquid-crystalline octakis-(hexylthio)-zinc-(II) phthalocyanine (ZnPc2-B4) spun thin film sensor was fabricated to study the heating effect on the detection of chlorinated hydrocarbon vapors and to identify their interaction patterns at the reactive sites between the ZnPc2-B4 thin film and vapor molecules. The surface plasmon resonance (SPR) technique was employed to collect sensor response data, which were analyzed to determine the optical and sensor parameters. After the heating procedure, the thickness of the ZnPc2-B4 thin film decreased from 49.5 to 43.5 nm, and the sensor sensitivity for dichloromethane vapor decreased from 0.2864 to 0.1015% response/ppm. A similar heating effect on the SPR curve measurement occurred, and the SPR curve was shifted from 0.12 ° to 0.09 ° when the ZnPc2-B4 thin film was exposed to the dichloromethane vapor. Atomic force microscopy results showed a compact and uniform surface with a surface roughness value of 2.77 nm. Density functional theory was used to elucidate interaction patterns between the ZnPc2-B4 thin film and the selected vapor. It was found that Zn···Cl, C···Cl, and N···H interactions occurred. In addition, the interaction of Zn with the nucleophilic carbon atom of the vapor interacts with the π-electrons of the CC double bond. ZnPc2-B4 spun thin film sensor could be a potential candidate for optical sensor applications, such as environmental monitoring or VOC detection.
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