State Key Laboratory of Transducer Technology, Institute of Electronics, Chinese Academy of Sciences, Beijing, China.
Analyst. 2012 Oct 21;137(20):4822-8. doi: 10.1039/c2an16057a.
Sol-gel copolymer-templated mesoporous silica films with a thickness of 70 nm and interpore spacing of 4.34 nm were fabricated on gold layer covered glass substrates for application as a wavelength-interrogated surface plasmon resonance (SPR) sensor. The resonance wavelength (λ(R)) of the sensor with a solution sample was determined by absorptiometry at a given incident angle. A comparison between the experimental data obtained with the coated and uncoated SPR chips demonstrated that the mesoporous silica film effectively enhanced sensor response to individual adsorption of cysteamine molecules and lead(II) ions. An approximate proportional relationship between the resonance-wavelength shift of the sensor and the volume fraction of analyte molecules adsorbed in the mesoporous silica film was obtained by numerical simulation. Porosities of 0.865 and 0.785 for the two silica films used as well as the volume fractions of 0.048 and 0.116 for adsorbed lysozyme and cysteamine molecules were determined by fitting the simulation results to the experimental data. The adsorbed amount of cysteamine (∼0.5 nm) is equivalent to more than 16 full monolayers on the geometric surface of the mesoporous silica film used. In contrast, an equivalence of less than 2 full monolayers for adsorbed lysozyme molecules (3 nm × 3 nm × 4.5 nm) suggests that the mesoporous silica film has good size-selective adsorption capability due to its uniform pore size distribution. Cysteamine modification of the mesoporous silica film renders the SPR sensor able to detect lead(II) ions at concentrations as low as 1 nM.
厚度为 70nm、孔间距为 4.34nm 的介孔硅溶胶-共聚物模板膜被制备在金层覆盖的玻璃基底上,用作波长可调谐表面等离子体共振(SPR)传感器。在给定入射角下,通过吸光度法确定带有溶液样品的传感器的共振波长(λ(R))。与未镀膜的 SPR 芯片相比,实验数据表明介孔硅膜有效增强了传感器对半胱氨酸分子和铅(II)离子的单个吸附的响应。通过数值模拟得到了传感器的共振波长位移与吸附在介孔硅膜中的分析物分子的体积分数之间的近似比例关系。通过拟合模拟结果与实验数据,确定了两种用作介孔硅膜的孔隙率分别为 0.865 和 0.785,以及吸附溶菌酶和半胱氨酸分子的体积分数分别为 0.048 和 0.116。吸附的半胱氨酸(∼0.5nm)量相当于介孔硅膜的几何表面上超过 16 个完整单层。相比之下,吸附溶菌酶分子(3nm×3nm×4.5nm)的等效物小于 2 个完整单层,表明介孔硅膜由于其均匀的孔径分布具有良好的尺寸选择性吸附能力。介孔硅膜对半胱氨酸的修饰使 SPR 传感器能够检测低至 1nM 的铅(II)离子。