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用于化学和生物传感的卟啉金属有机框架传感器

Porphyrin Metal-organic Framework Sensors for Chemical and Biological Sensing.

作者信息

Dhir Rupy, Kaur Manpreet, Malik Ashok Kumar

机构信息

Department of Chemistry, G.S.S.D.G.S. Khalsa College, Patiala, Punjab, India.

Department of Applied Sciences, Chandigarh Group of Colleges, Mohali, India.

出版信息

J Fluoresc. 2025 Apr;35(4):1895-1917. doi: 10.1007/s10895-024-03674-0. Epub 2024 Apr 12.

Abstract

Porphyrins and porphyrin derivatives have been intensively explored for a number of applications such as sensing, catalysis, adsorption, and photocatalysis due to their outstanding photophysical properties. Their usage in sensing applications, however, is limited by intrinsic defects such as physiological instability and self-quenching. To reduce self-quenching susceptibility, researchers have developed porphyrin metal-organic frameworks (MOFs). Metal-organic frameworks (MOFs), a unique type of hybrid porous coordination polymers comprised of metal ions linked by organic linkers, are gaining popularity. Porphyrin molecules can be integrated into MOFs or employed as organic linkers in the production of MOFs. Porphyrin-based MOFs are a separate branch of the huge MOF family that combines the distinguishing qualities of porphyrins (e.g., fluorescent nature) and MOFs (e.g., high surface area, high porosity) to enable sensing applications with higher sensitivity, specificity, and extended target range. The key synthesis techniques for porphyrin-based MOFs, such as porphyrin@MOFs, porphyrinic MOFs, and composite porphyrinic MOFs, are outlined in this review article. This review article focuses on current advances and breakthroughs in the field of porphyrin-based MOFs for detecting a variety of targets (for example, metal ions, anions, explosives, biomolecules, pH, and toxins). Finally, the issues and potential future uses of this class of emerging materials for sensing applications are reviewed.

摘要

由于卟啉和卟啉衍生物具有出色的光物理性质,它们已被广泛应用于传感、催化、吸附和光催化等多个领域。然而,它们在传感应用中的使用受到生理不稳定性和自猝灭等固有缺陷的限制。为了降低自猝灭敏感性,研究人员开发了卟啉金属有机框架(MOF)。金属有机框架(MOF)是一种独特的混合多孔配位聚合物,由有机连接体连接的金属离子组成,正越来越受欢迎。卟啉分子可以整合到MOF中,或在MOF的生产中用作有机连接体。基于卟啉的MOF是庞大的MOF家族中的一个独立分支,它结合了卟啉的独特性质(如荧光性质)和MOF的独特性质(如高表面积、高孔隙率),以实现具有更高灵敏度、特异性和更广泛目标范围的传感应用。本文综述了基于卟啉的MOF的关键合成技术,如卟啉@MOF、卟啉基MOF和复合卟啉基MOF。本文综述文章重点介绍了基于卟啉的MOF在检测各种目标(例如金属离子、阴离子、爆炸物、生物分子、pH值和毒素)领域的当前进展和突破。最后,综述了这类新兴材料在传感应用中的问题和潜在的未来用途。

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