Strashilov Vesseline L, Alexieva Gergana E, Velichkov Velitchko N, Avramov Ivan D, Evans Stephen D
Sofia University, Faculty of Physics, Department of Solid State Physics and Microelectronics, 1164 Sofia, Bulgaria.
IEEE Trans Ultrason Ferroelectr Freq Control. 2009 May;56(5):1018-23. doi: 10.1109/TUFFC.2009.1133.
A 1 GHz surface transverse wave resonator on 36 degrees Y-cut quartz plate coated with organothiol-functionalized gold nanoparticle film has been studied as a chemical gas sensor. Considerable sensitivity of the resonant frequency to vapors of ethanol, methanol, chloroform, and acetic acid has been found. Owing to the high short-term stability of the oscillator built, the detection limit is in the low ppm range. The results qualitatively confirm previous results on the same film type obtained by conductivity measurements. In the present case, the conductivity effect resulting from variable separation of nanoparticles is accompanied with surface-attached mass of the absorbed gas. The film matrix exhibits considerable capacity to absorb large amounts of molecules at high gas concentrations.
已对涂覆有有机硫醇功能化金纳米颗粒薄膜的36°Y切割石英板上的1 GHz表面横向波谐振器作为化学气体传感器进行了研究。已发现谐振频率对乙醇、甲醇、氯仿和乙酸蒸汽具有相当高的灵敏度。由于所构建振荡器的高短期稳定性,检测限处于低ppm范围。这些结果定性地证实了先前通过电导率测量获得的关于相同薄膜类型的结果。在当前情况下,由纳米颗粒可变间距产生的电导率效应伴随着吸附气体的表面附着质量。该薄膜基质在高气体浓度下表现出吸收大量分子的相当大的能力。