Department of Chemical Engineering, SRM Institute of Science and Technology, Kattankulathur, Tamil Nadu, India.
Department of Chemical Engineering, KPR Institute of Engineering and Technology, Coimbatore, Tamil Nadu, India.
Anal Chim Acta. 2021 Oct 16;1182:338953. doi: 10.1016/j.aca.2021.338953. Epub 2021 Aug 16.
This work describes the development of a miniaturized paper-based pH detection platform using natural dye extracted from red cabbage (Brassica oleracea). The easily available paper was used as a substrate and the requisite patterned zone was created with the aid of a punching machine. Experimental parameters were optimized to obtain the best signal readout. The performance of the device at different pH values was quantitatively assessed using digital image analysis with various color space models. Regression analysis suggested that a∗ parameter in CIEL∗a∗b∗ color space model, which captures the variations on the red-green scale, exhibited the best fit with experimental data (R = 0.9754). This parameter was used for the quantitative estimation of pH variations in a wide range of pH (1-12). A series of real test samples were examined using the paper-based device and results validated with a standard pH meter. The use of paper and natural dye makes the device eco-friendly. The simplicity of fabrication, ease of usage and low reagent and sample volume requirements render the methodology suitable for in situ measurements of pH. The approach demonstrated here would pave the way for the development of clean, sustainable and intensified chemical sensor technologies.
本工作描述了一种使用从紫甘蓝( Brassica oleracea )中提取的天然染料开发的微型纸基 pH 检测平台。将易得的纸张用作基底,并借助打孔机创建所需的图案化区域。通过使用各种颜色空间模型的数字图像分析来优化实验参数以获得最佳信号读取。使用不同的颜色空间模型对该装置在不同 pH 值下的性能进行定量评估。实验数据与 CIEL∗a∗b∗颜色空间模型中的 a∗参数拟合最好,该参数捕捉了红-绿尺度上的变化(R = 0.9754)。该参数用于在很宽的 pH 范围内(1-12)定量估计 pH 值的变化。使用基于纸张的装置对一系列实际测试样品进行了检测,并使用标准 pH 计对结果进行了验证。纸张和天然染料的使用使该装置具有环保性。制造简单、使用方便且试剂和样品体积需求低,使得该方法适合于 pH 的现场测量。这里展示的方法将为清洁、可持续和强化化学传感器技术的发展铺平道路。