Gogia Alisha, Mandal Sanjay K
Department of Chemical Sciences, Indian Institute of Science Education and Research Mohali, Sector 81, Manauli Post Office, S.A.S. Nagar, Mohali, Punjab 140306, India.
ACS Appl Mater Interfaces. 2022 Apr 13;14(14):16357-16368. doi: 10.1021/acsami.2c02798. Epub 2022 Mar 29.
Metal-organic framework (MOF)-based sensors for the detection of various analyte molecules has been a subject of absolute importance. However, most of these sensors rely on the turn-off (quenching) transduction response, while those reporting turn-on response are very rare. In this article, we have synthesized two new MOF-based sensors, {[Zn(oxdz)(tpbn)]·14HO} () and {[Zn(oxdz)(tpxn)]·10HO·2CHOH} (), via the self-assembly of Zn(II) metal ions, a fluorogenic oxdz linker, and bis(tridentate) ligands (tpbn and tpxn) under ambient conditions. Their formation from such a self-assembly process has been evaluated on the basis of the geometry around the five-coordinated Zn(II), preferential meridional binding of the bis(tridentate) ligands, and diverse binding of the carboxylate groups in oxdz. Although and are isostructural, a difference in the transduction mechanism for the sensing of acetylacetone in organic solvents (turn-on for and turn-off for ) is observed and can be attributed to the spacer in the bis(tridentate) ligands. We have demonstrated the competing effect of the nonradiative interactions and photoinduced electron transfer toward the sensing mechanism. The results are well-supported by the Fourier transform infrared spectroscopy study, intensity versus concentration plots, spectral overlap measurements, time-resolved fluorescence studies, and MM2 and density functional theory calculations. Furthermore, we have showcased the utilization of for the sensing of trace amounts of water in organic solvents.
用于检测各种分析物分子的金属有机框架(MOF)基传感器一直是极其重要的研究课题。然而,这些传感器大多依赖于关闭(猝灭)转导响应,而报道开启响应的传感器则非常罕见。在本文中,我们通过在环境条件下锌(II)金属离子、荧光性oxdz连接体和双(三齿)配体(tpbn和tpxn)的自组装,合成了两种新型的MOF基传感器,{[Zn(oxdz)(tpbn)]·14H₂O}()和{[Zn(oxdz)(tpxn)]·10H₂O·2CH₃OH}()。基于五配位锌(II)周围的几何结构、双(三齿)配体的优先经向结合以及oxdz中羧酸根基团的不同结合,对它们由这种自组装过程形成的情况进行了评估。尽管和是同构的,但观察到它们在有机溶剂中对乙酰丙酮传感的转导机制存在差异(对为开启,对为关闭),这可归因于双(三齿)配体中的间隔基。我们已经证明了非辐射相互作用和光诱导电子转移对传感机制的竞争效应。傅里叶变换红外光谱研究、强度与浓度关系图、光谱重叠测量、时间分辨荧光研究以及MM2和密度泛函理论计算很好地支持了这些结果。此外,我们展示了用于检测有机溶剂中痕量水的应用。