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An inkjet-printed sulfonephthalein dye indicator array for volatile amine detection

机译:用于挥发性胺检测的喷墨印刷磺酞染料指示剂阵列

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Colorimetric indicators are versatile for applications such as intelligent food packaging, for reflecting the actual quality and/or monitoring distribution history of food products. In this study, a colorimetric indicator array composed of sulfonephthalein dyes was successfully developed by piezoelectric inkjet printing, for the detection of volatile amines— the primary spoilage gases for fish and seafood products. The printing inks were formulated in water/ethanol/1-butanol mixture. By refilling the printer's cartridges with our formulated inks and controlling the red, green, and blue color parameters, a 7 × 9 indicator array was printed onto inkjet transparency films. The color response of the indicator array was tested with different volatile amines at various concentrations. The array indicator was capable of discriminating six different volatile amines: ammonia, trimethylamine, dimethylamine, triethylamine, piperidine, and hydrazine. The printability of the inks was investigated by characterizing their density, surface tension, and dynamic viscosity, dictating that all formulated inks were printable fluid. The microstructural morphologies of the printed dyes on transparency films were evaluated using scanning electron microscopy. Interactions of the dye with the volatiles were studied by Fourier transform infrared spectroscopy. In summary, the piezoelectric inkjet printing method presented in this study offers a convenient, efficient, and flexible means to fabricate colorimetric indicators for detecting food spoilage volatiles. These indicators are promising as sensing components in intelligent packaging systems, to reveal the freshness offish products by correlating with quality parameters such as total volatile basic nitrogen, microbial growth, and sensory attributes. Further studies on the feasibility of using the array indicators in real food packaging systems, development of strategy to mitigate the potential migration of the indicator dyes, and designing array patterns optimal for machine/human interpretation, are important to commercialize the technology.
机译:比色指示器可用于智能食品包装等应用,以反映食品的实际质量和/或监控食品的分配历史。在这项研究中,通过压电喷墨印刷成功开发了一种由磺酞染料组成的比色指示剂阵列,用于检测挥发性胺(鱼和海鲜产品的主要腐败气体)。将印刷油墨配制在水/乙醇/ 1-丁醇混合物中。通过用我们配制的墨水重新填充打印机的墨盒并控制红色,绿色和蓝色参数,将7×9指示器阵列打印到喷墨透明胶片上。用不同浓度的不同挥发性胺测试了指示剂阵列的颜色响应。阵列指示器能够区分六种不同的挥发性胺:氨,三甲胺,二甲胺,三乙胺,哌啶和肼。通过表征油墨的密度,表面张力和动态粘度,研究了油墨的可印刷性,指出所有配制的油墨都是可印刷的液体。使用扫描电子显微镜评估在透明膜上印刷的染料的微观结构形态。通过傅里叶变换红外光谱研究了染料与挥发物的相互作用。总之,本研究中提出的压电喷墨打印方法提供了一种方便,有效且灵活的方法来制造比色指示剂,以检测食物变质挥发物。这些指标有望作为智能包装系统中的传感组件,通过与诸如总挥发性碱性氮,微生物生长和感官属性等质量参数相关联来揭示鱼产品的新鲜度。进一步研究在实际食品包装系统中使用阵列指示剂的可行性,开发减轻指示剂染料潜在迁移的策略以及设计最适合机器/人为解释的阵列图案对商业化技术至关重要。

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