Institute of Infection & Immunity, School of Medicine, Cardiff University , Henry Wellcome Building, Heath Park, Cardiff CF14 4XN, United Kingdom.
ACS Appl Mater Interfaces. 2016 Dec 14;8(49):33802-33810. doi: 10.1021/acsami.6b11640. Epub 2016 Dec 1.
In this work, the formation of a nanotextured surface is reported on flexographic printed zinc oxide thin films which provide an excellent platform for low-cost, highly sensitive biosensing applications. The ability to produce nanotextured surfaces using a high-throughput, roll-to-roll production method directly from precursor ink without any complicated processes is commercially attractive for biosensors that are suitable for large-scale screening of diseases at low cost. The zinc oxide thin film was formed by printing a zinc acetate precursor ink solution and annealing at 300 °C. An intricate nanotexturing of the film surface was achieved through 150 °C drying process between multiple prints. These surface nanostructures were found to be in the range of 100 to 700 nm in length with a width of 58 ± 18 nm and a height of between 20 and 60 nm. Such structures significantly increase the surface area to volume ratio of the biosensing material, which is essential to high sensitivity detection of diseases. Nonfaradaic electrochemical impedance spectroscopy measurements were carried out to detect the pp65-antigen of the human cytomegalovirus using the printed device, which has a low limit of detection of 5 pg/mL.
本工作报道了在柔印印刷氧化锌薄膜上形成纳米纹理表面,这为低成本、高灵敏度生物传感应用提供了极好的平台。使用高通量、卷对卷生产方法直接从前驱体油墨生产纳米纹理表面,而无需任何复杂的工艺,这对于适用于大规模低成本筛选疾病的生物传感器具有商业吸引力。氧化锌薄膜是通过印刷醋酸锌前体油墨溶液并在 300°C 下退火形成的。通过在多次印刷之间进行 150°C 的干燥处理,实现了薄膜表面的复杂纳米纹理化。这些表面纳米结构的长度范围为 100 至 700nm,宽度为 58±18nm,高度在 20 至 60nm 之间。这种结构显著增加了生物传感材料的表面积与体积比,这对于疾病的高灵敏度检测至关重要。使用印刷器件进行了非法拉第电化学阻抗谱测量,以检测人巨细胞病毒的 pp65 抗原,其检测限低至 5pg/mL。