Functionalized Copper Phthalocyanine and Zinc Phthalocyanine as a Coating Layer on the Sensitivity of QCM-Based VOCs Sensor

Masruroh Masruroh, R. Tjahjanto, Gancang Saroja, D. Santjojo
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Abstract

The sensitivity of a QCM-based VOCs sensor with two kinds of a metal phthalocyanine, i.e., copper phthalocyanine (CuPc) and zinc phthalocyanine (ZnPc) was examined for various VOCs. The sensitivity of the two metal phthalocyanine was determined by the compatibility of the overlapped metal orbitals (Cu(II) dan Zn(II)) and the corresponding VOCs. The CuPc and the ZnPc layer were deposited on the quartz crystal oscillator by a vacuum evaporation method. The frequency shift and the sensitivity of the sensors with the two functional layers were tested using 5 VOCs: formaldehyde, propanol, ethanol, toluene, and ketone. The CuPc sensor showed the highest sensitivity to formaldehyde. On the other hand, the ZnPc was highly sensitive to ethanol.
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功能化酞菁铜和酞菁锌涂层对qcm型VOCs传感器灵敏度的影响
研究了含有两种金属酞菁,即铜酞菁(CuPc)和锌酞菁(ZnPc)的基于QCM的VOC传感器对各种VOC的灵敏度。两种金属酞菁的灵敏度通过重叠金属轨道(Cu(II)和Zn(II))与相应VOC的相容性来确定。通过真空蒸发法在石英晶体振荡器上沉积CuPc和ZnPc层。使用5种挥发性有机物:甲醛、丙醇、乙醇、甲苯和酮,测试了具有两个功能层的传感器的频移和灵敏度。CuPc传感器对甲醛的敏感性最高。另一方面,ZnPc对乙醇高度敏感。
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审稿时长
12 weeks
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