Lee Dae-Sik, Lee Jun Hwang, Luo Jikui, Fu Yongqing, Milne William I, Maeng Sunglyul, Jung Mun Yeon, Park Sun Hee, Yoon Hyun C
IT Convergence Components Lab., Electronics and Telecommunications Research Institute, Daejeon 305350, Korea.
J Nanosci Nanotechnol. 2009 Dec;9(12):7181-5. doi: 10.1166/jnn.2009.1662.
The novelty of this study resides in the fabrication of a bio-sensing device, based on the surface acoustic wave (SAW) on a nanocrystalline ZnO film. The ZnO film was deposited using an rf magnetron sputtering at room temperature on silicon. The deposited films showed the c-axis-oriented crystallite with grain size of approximately 40 nm. The immunosensing device was fabricated using photolithographic protocols on the film. As a model biomolecular recognition and immunosensing, biospecific interaction between a 6-(2,4-dinitrophenyl)aminohexanoic acid (DNP) antigen and its antibody was employed, demonstrating the shifts of resonant frequencies on SAW immunosensing device. The device exhibited a linearity as a function of the antibody concentration in the range of 20-20,000 ng/ml.
本研究的新颖之处在于基于纳米晶ZnO薄膜上的表面声波(SAW)制造生物传感装置。ZnO薄膜在室温下通过射频磁控溅射沉积在硅上。沉积的薄膜显示出c轴取向的微晶,晶粒尺寸约为40nm。免疫传感装置是在该薄膜上使用光刻协议制造的。作为模型生物分子识别和免疫传感,采用了6-(2,4-二硝基苯基)氨基己酸(DNP)抗原与其抗体之间的生物特异性相互作用,证明了SAW免疫传感装置上共振频率的变化。该装置在20-20,000ng/ml范围内随抗体浓度呈线性变化。