Department of Chemistry, Maharishi Markandeshwar (Deemed to be University), Mullana, Ambala, 133203, Haryana, India.
Department of Chemistry, Faculty of Science and Arts, Promising Centre for Sensors and Electronic Devices (PCSED), Najran University, Najran-11001, Kingdom of Saudi Arabia.
Anal Methods. 2024 May 9;16(18):2777-2809. doi: 10.1039/d3ay02258g.
Paper-based sensors, often referred to as paper-based analytical devices (PADs), stand as a transformative technology in the field of analytical chemistry. They offer an affordable, versatile, and accessible solution for diverse analyte detection. These sensors harness the unique properties of paper substrates to provide a cost-effective and adaptable platform for rapid analyte detection, spanning chemical species, biomolecules, and pathogens. This review highlights the key attributes that make paper-based sensors an attractive choice for analyte detection. PADs demonstrate their versatility by accommodating a wide range of analytes, from ions and gases to proteins, nucleic acids, and more, with customizable designs for specific applications. Their user-friendly operation and minimal infrastructure requirements suit point-of-care diagnostics, environmental monitoring, food safety, and more. This review also explores various fabrication methods such as inkjet printing, wax printing, screen printing, dip coating, and photolithography. Incorporating nanomaterials and biorecognition elements promises even more sophisticated and sensitive applications.
基于纸张的传感器,通常被称为纸基分析器件 (PADs),是分析化学领域的一项变革性技术。它们为各种分析物的检测提供了一种经济实惠、多功能且易于使用的解决方案。这些传感器利用纸张基质的独特性质,为快速分析物检测提供了一个具有成本效益和适应性的平台,涵盖了化学物质、生物分子和病原体。本综述强调了使基于纸张的传感器成为分析物检测的理想选择的关键属性。PADs 通过适应广泛的分析物,包括离子和气体、蛋白质、核酸等,展示了其多功能性,并针对特定应用进行了定制设计。其用户友好的操作和最小的基础设施要求适用于即时诊断、环境监测、食品安全等领域。本综述还探讨了各种制造方法,如喷墨打印、蜡印、丝网印刷、浸涂和光刻。结合纳米材料和生物识别元件有望实现更复杂和敏感的应用。