Maddipatla Dinesh, Narakathu Binu B, Ochoa Manuel, Rahimi Rahim, Zhou Jiawei, Yoon Chang K, Jiang Hongjie, Al-Zubaidi Hazim, Obare Sherine O, Zieger Michael A, Ziaie Babak, Atashbar Massood Z
Department of Electrical and Computer Engineering, Western Michigan University Michigan USA
School of Electrical and Computer Engineering, Purdue University Indiana USA.
RSC Adv. 2019 Jul 23;9(39):22695-22704. doi: 10.1039/c9ra02883h. eCollection 2019 Jul 17.
A novel and flexible oxygen sensing patch was successfully developed for wearable, industrial, food packaging, pharmaceutical and biomedical applications using a cost-efficient and rapid prototypable additive inkjet print manufacturing process. An oxygen sensitive ink was formulated by dissolving ruthenium dye and ethyl cellulose polymer in ethanol in a 1 : 1 : 98 (w/w/w) ratio. The patch was fabricated by depositing the oxygen sensitive ink on a flexible parchment paper substrate using an inkjet printing process. A maximum absorbance from 430 nm to 480 nm and a fluorescence of 600 nm was observed for the oxygen sensitive ink. The capability of the oxygen sensitive patch was investigated by measuring the fluorescence quenching lifetime of the printed dye for varying oxygen concentration levels. A fluorescence lifetime decay () from ≈4 μs to ≈1.9 μs was calculated for the printed oxygen sensor patch, for oxygen concentrations varying from ≈5 mg L to ≈25 mg L. A sensitivity of 0.11 μs mg L and a correlation coefficient of 0.9315 was measured for the printed patches. The results demonstrated the feasibility of employing an inkjet printing process for the rapid prototyping of flexible and moisture resistant oxygen sensitive patches which facilitates a non-invasive method for monitoring oxygen and its concentration levels.
利用具有成本效益且可快速成型的添加剂喷墨打印制造工艺,成功开发出一种新颖且灵活的氧传感贴片,可用于可穿戴、工业、食品包装、制药和生物医学应用。通过将钌染料和乙基纤维素聚合物以1∶1∶98(重量/重量/重量)的比例溶解在乙醇中,配制出一种氧敏感墨水。该贴片是通过使用喷墨打印工艺将氧敏感墨水沉积在柔性羊皮纸基材上制成的。观察到氧敏感墨水在430纳米至480纳米处有最大吸光度,在600纳米处有荧光。通过测量印刷染料在不同氧浓度水平下的荧光猝灭寿命,研究了氧敏感贴片的性能。对于印刷的氧传感器贴片,当氧浓度从约5毫克/升变化到约25毫克/升时,计算出荧光寿命衰减()从约4微秒到约1.9微秒。测量得到印刷贴片的灵敏度为0.11微秒/毫克/升,相关系数为0.9315。结果证明了采用喷墨打印工艺快速成型柔性且防潮的氧敏感贴片的可行性,这为监测氧气及其浓度水平提供了一种非侵入性方法。