Pan Tung-Ming, Lin Jian-Chi, Wu Min-Hsien, Lai Chao-Sung
Department of Electronics Engineering, Chang Gung University, Taoyuan 333, Taiwan, ROC.
Biosens Bioelectron. 2009 May 15;24(9):2864-70. doi: 10.1016/j.bios.2009.02.018. Epub 2009 Feb 27.
For high sensitive pH sensing, an electrolyte-insulator-semiconductor (EIS) device with Nd(2)TiO(5) thin layers fabricated on Si substrates by means of reactive sputtering and the subsequent post-deposition annealing (PDA) treatment was proposed. In this work, the effect of thermal annealing (600, 700, 800, and 900 degrees C) on the structural characteristics of Nd(2)TiO(5) thin layer was investigated by X-ray diffraction, X-ray photoelectron spectroscopy, and atomic force microscopy. The observed structural properties were then correlated with the resulting pH sensing performances. For enzymatic field-effect-transistors-based urea biosensing, a hybrid configuration of the proposed Nd(2)TiO(5) thin layer with urease-immobilized alginate film attached was established. Within the experimental conditions investigated, the EIS device with the Nd(2)TiO(5) thin layer annealed at 800 degrees C exhibited a higher pH detection sensitivity of 57.2 mV/pH, a lower hysteresis voltage of 2.33 mV, and a lower drift rate of 1.80 mV/h compared to those at other annealing temperatures. These results are attributed to the formation of a thinner low-k interfacial layer at the oxide/Si interface and the higher surface roughness occurred at this annealing temperature. Furthermore, the presented urea biosensor was also proved to be able to detect urea with good linearity (R(2)=0.99) and reasonable sensitivity of 9.52 mV/mM in the urea concentration range of 3-40 mM. As a whole, the present work has provided some fundamental data for the use of Nd(2)TiO(5) thin layer for EIS-based pH detection and the extended application for biosensing.
为实现高灵敏度pH传感,提出了一种通过反应溅射和后续的沉积后退火(PDA)处理在硅衬底上制备具有Nd(2)TiO(5)薄层的电解质-绝缘体-半导体(EIS)器件。在这项工作中,通过X射线衍射、X射线光电子能谱和原子力显微镜研究了热退火(600、700、800和900℃)对Nd(2)TiO(5)薄层结构特性的影响。然后将观察到的结构特性与所得的pH传感性能相关联。对于基于酶场效应晶体管的尿素生物传感,建立了所提出的Nd(2)TiO(5)薄层与附着有固定化脲酶的藻酸盐膜的混合结构。在所研究的实验条件下,与其他退火温度下的器件相比,在800℃退火的具有Nd(2)TiO(5)薄层的EIS器件表现出更高的pH检测灵敏度,为57.2 mV/pH,更低的滞后电压,为2.33 mV,以及更低的漂移率,为1.80 mV/h。这些结果归因于在氧化物/硅界面形成了更薄的低介电常数界面层以及在此退火温度下出现的更高表面粗糙度。此外,所展示的尿素生物传感器还被证明能够在3-40 mM的尿素浓度范围内以良好的线性度(R(2)=0.99)和9.52 mV/mM的合理灵敏度检测尿素。总体而言,本工作为将Nd(2)TiO(5)薄层用于基于EIS的pH检测及其在生物传感中的扩展应用提供了一些基础数据。