Mohan Binduja, Shanmughan Ananthu, Krishna Alenthwar Vamshi, Noushija Mannanthara Kunhumon, Umadevi Deivasigamani, Shanmugaraju Sankarasekaran
Department of Chemistry, Indian Institute of Technology Palakkad, Palakkad, Kerala, India.
Front Chem. 2024 Feb 15;12:1361796. doi: 10.3389/fchem.2024.1361796. eCollection 2024.
Extended organic polymers such as amorphous Covalent Organic Polymers (COPs) and crystalline Covalent Organic Frameworks (COFs) are emerging functional polymeric materials that have recently been shown promises as luminescent materials for chemosensing applications. A wide variety of luminescence COPs and COFs have been synthesized and successfully used as fluorescence-sensing materials for hazardous environmental pollutants and toxic contaminants. This review exemplifies various COPs and COFs-based fluorescence sensors for selective sensing of Fe(III) ions. The fluorescence sensors are sorted according to their structural features and each section provides a detailed discussion on the synthesis and fluorescence sensing ability of different COPs and COFs towards Fe(III) ions. Also, this review highlights the limitations of the existing organic polymer-based chemosensors and future perspectives on translating COPs and COFs-based fluorescence sensors for the practical detection of Fe(III) ions.
诸如非晶态共价有机聚合物(COPs)和晶态共价有机框架(COFs)等扩展有机聚合物是新兴的功能高分子材料,最近已显示出有望作为用于化学传感应用的发光材料。各种各样的发光COPs和COFs已被合成,并成功用作检测有害环境污染物和有毒污染物的荧光传感材料。本综述举例说明了各种基于COPs和COFs的荧光传感器,用于选择性检测Fe(III)离子。这些荧光传感器根据其结构特征进行分类,每个部分都详细讨论了不同COPs和COFs对Fe(III)离子的合成及荧光传感能力。此外,本综述强调了现有基于有机聚合物的化学传感器的局限性,以及将基于COPs和COFs的荧光传感器用于实际检测Fe(III)离子的未来前景。