纤维素基固态荧光传感器的研究进展

Research progress of cellulose-based solid-state fluorescence sensors

  • 摘要: 在“双碳”战略背景下,生物基荧光智能材料的研究进展及其多功能应用备受瞩目。纤维素是自然界储量最丰富的天然高分子材料,基于纤维素的固态荧光传感器不但具备绿色、成本低、可降解、亲水性好、生物相容性好、无毒等优点,相较于传统的荧光分子探针,还拥有更便携、高效、寿命长、稳定性高、适用场景广泛等优势。综述了近些年来利用化学改性制备纤维素基固态荧光传感器的研究进展,阐明了纤维素与不同荧光分子结合的机制,即通过共价交联或者引入官能团,将荧光分子引到纤维素表面进行改性。分类介绍了各种纤维素基固态荧光传感器的类型,包括阳离子型、阴离子型、pH型、硝基芳香型、气体型和双(多)重响应型等,以及在环境检测、生物成像、食品安全、荧光印刷及防伪等应用领域的优势。最后,详细探讨了纤维素基荧光智能传感器的相关研究,并对其发展机遇和未来挑战进行展望。

     

    Abstract: Under the background of the "dual carbon" strategy, the research progress of bio-based fluorescent intelligent materials and their multifunctional applications have attracted much attention. Cellulose is the most abundant natural polymer material in nature. Cellulose-based solid-state fluorescence sensors not only have the advantages of green, low cost, biodegradability, good hydrophilicity, good biocompatibility, and non-toxicity, but also have advantages such as portability, efficiency, long lifespan, high stability, and wide applicability compared to traditional fluorescent molecular probes. The research progress of cellulose-based solid-state fluorescent sensors prepared by chemical modification in recent years was reviewed. The mechanism of the combination of cellulose with different fluorescent molecules was clarified. Fluorescent molecules were introduced to the surface of cellulose by covalent crosslinking or introduction of functional groups. Various types of cellulose-based solid-state fluorescence sensors, including cationic, anionic, pH-type, nitroaromatic, gas-type and double (multi) re-responsive types, were introduced. The advantages of cellulose-based solid-state fluorescence sensors in environmental detection, bioimaging, food safety, fluorescence printing and anti-counterfeiting applications were also introduced. Finally, the relevant research on cellulose-based fluorescent smart sensors is discussed in detail, and their development opportunities and future challenges are prospected.

     

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