Recent Advances in Luminescent Recognition and Chemosensing of Iodide in Water.

作者: Josue Valdes‐García , Luis D. Rosales‐Vázquez , Iván J. Bazany‐Rodríguez , Alejandro Dorazco‐González

DOI: 10.1002/ASIA.202000758

关键词: NanotechnologyChemistryHalogenIodideHydrogen bondLuminescenceSupramolecular chemistryPhosphorescenceFluorescenceStructural approach

摘要: This Minireview covers the latest developments of chemosensors based on transition-metal receptors and organic fluorophores with specific binding sites for luminescent detection recognition iodide in aqueous media real samples. In all selected examples within last decade (made-post 2010), sensing is probed by monitoring real-time changes fluorescence or phosphorescence properties chemosensors. review highlights effective strategies to from a structural approach where recognition/sensing process, through supramolecular interactions as coordination bonds, hydrogen halogen bonds electrostatic interactions, transduced into an optical change easily measurable. The selective active field research global interest due importance biological, medicinal, industrial, environmental chemical processes.

参考文章(82)
Jiasheng Wu, Bomi Kwon, Weimin Liu, Eric V. Anslyn, Pengfei Wang, Jong Seung Kim, Chromogenic/Fluorogenic Ensemble Chemosensing Systems. Chemical Reviews. ,vol. 115, pp. 7893- 7943 ,(2015) , 10.1021/CR500553D
Nathalie Busschaert, Claudia Caltagirone, Wim Van Rossom, Philip A. Gale, Applications of Supramolecular Anion Recognition Chemical Reviews. ,vol. 115, pp. 8038- 8155 ,(2015) , 10.1021/ACS.CHEMREV.5B00099
Iván J. Bazany-Rodríguez, Diego Martínez-Otero, Joaquín Barroso-Flores, Anatoly K. Yatsimirsky, Alejandro Dorazco-González, Sensitive water-soluble fluorescent chemosensor for chloride based on a bisquinolinium pyridine-dicarboxamide compound Sensors and Actuators B-chemical. ,vol. 221, pp. 1348- 1355 ,(2015) , 10.1016/J.SNB.2015.07.031
Navneet Kaur, Gargi Dhaka, Jasvinder Singh, Hg2+-induced deprotonation of an anthracene-based chemosensor: set–reset flip-flop at the molecular level using Hg2+ and I− ions New Journal of Chemistry. ,vol. 39, pp. 6125- 6129 ,(2015) , 10.1039/C5NJ00683J
Stefan Kubik, Anion recognition in water Chemical Society Reviews. ,vol. 39, pp. 3648- 3663 ,(2010) , 10.1039/B926166B
Sameer Hussain, Siddhartha De, Parameswar Krishnan Iyer, Thiazole-Containing Conjugated Polymer as a Visual and Fluorometric Sensor for Iodide and Mercury ACS Applied Materials & Interfaces. ,vol. 5, pp. 2234- 2240 ,(2013) , 10.1021/AM400123J
Edmund. Urbano, Helmut. Offenbacher, Otto S. Wolfbeis, Optical sensor for continuous determination of halides Analytical Chemistry. ,vol. 56, pp. 427- 429 ,(1984) , 10.1021/AC00267A029
Kazuaki Ito, Teppei Ichihara, Huang Zhuo, Keisuke Kumamoto, Andrei R. Timerbaev, Takeshi Hirokawa, Determination of trace iodide in seawater by capillary electrophoresis following transient isotachophoretic preconcentration Comparison with ion chromatography Analytica Chimica Acta. ,vol. 497, pp. 67- 74 ,(2003) , 10.1016/J.ACA.2003.08.052
Pavel Anzenbacher, Karolina Jursíková, Jonathan L. Sessler, Second Generation Calixpyrrole Anion Sensors Journal of the American Chemical Society. ,vol. 122, pp. 9350- 9351 ,(2000) , 10.1021/JA001308T