Huo Rong, Wang Chen, Wang Mei Yan, Sun Ming Yang, Jiang Shan, Xing Yong Heng, Bai Feng Ying
College of Chemistry and Chemical Engineering, Liaoning Normal University, Dalian City 116029, P. R. China.
Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, College of Chemistry, Jilin University, Changchun 130012, P. R. China.
Inorg Chem. 2023 May 1;62(17):6661-6673. doi: 10.1021/acs.inorgchem.3c00144. Epub 2023 Apr 18.
Detecting toxic amine and pesticide contamination in the environment is one of the most pressing issues for environmental sustainability. In this work, two 3D Ln-BINDI complexes [Ln = Eu (1), Sm (2); HBINDI (, '-bis(5-isophthalic acid)-1,4,5,8-naphthalenediimide)] have been designed and synthesized. Crystal structure of [Eu(BINDI) (NO)(DMA)]·2DMA (complex ) featuring the topology was determined by X-ray single-crystal diffraction. A multi-functional ratiometric luminescence sensor benefitting from π-electron-deficient NDI moieties and transition characteristics of lanthanide Eu ions for complex has been investigated. Markedly, complex exhibit completely different selective fluorescence ratiometric turn-on responses and pretty high sensitivity behaviors to aromatic amines (OPD), aliphatic amines (-BA), and pesticides (TBZ), respectively, which are driven by interactions between the electron-donating amino group and acceptor NDI site, contributing to complex as a potential ratiometric luminescent turn-on sensor for practical environmental applications. A PVA/@paper strip can be used as a potential size selectivity sensor for the practical detection of aliphatic amine vapors in the environment through visual chromic fluorescence enhancement. Because NDIs can undergo one-electron reduction to form stable NDI free radicals, solid complex can visually distinguish different kinds of amines by selective amine-specific color changes and has the photochromic property of erasable inkless printing.
检测环境中的有毒胺和农药污染是环境可持续发展最紧迫的问题之一。在这项工作中,设计并合成了两种三维镧系-联萘二酰亚胺配合物[Ln = Eu (1),Sm (2); HBINDI (,'-双(5-间苯二甲酸)-1,4,5,8-萘二酰亚胺)]。通过X射线单晶衍射确定了具有拓扑结构的[Eu(BINDI)(NO)(DMA)]·2DMA (配合物)的晶体结构。研究了一种多功能比率发光传感器,该传感器受益于缺π电子的NDI部分和镧系Eu离子对配合物的跃迁特性。值得注意的是,配合物对芳香胺(OPD)、脂肪胺(-BA)和农药(TBZ)分别表现出完全不同的选择性荧光比率开启响应和相当高的灵敏度行为,这是由供电子氨基与受体NDI位点之间的相互作用驱动的,这使得配合物成为一种潜在的用于实际环境应用的比率发光开启传感器。PVA/@纸条可作为一种潜在的尺寸选择性传感器,通过视觉变色荧光增强来实际检测环境中的脂肪胺蒸气。由于NDI可以进行单电子还原形成稳定的NDI自由基,固体配合物可以通过选择性的胺特异性颜色变化直观地区分不同种类的胺,并具有可擦除无墨打印的光致变色特性。