Department of Chemistry , Indian Institute of Technology Madras , Chennai 600036 , India.
Inorg Chem. 2018 Sep 17;57(18):11369-11381. doi: 10.1021/acs.inorgchem.8b00964. Epub 2018 Sep 4.
A new one-dimensional double chain photoluminescent Hg(II) coordination polymer (CP), {[Hg(L)]·(ClO)} (1), was synthesized using a benzimidazole-appended tripodal tridentate ligand, 1,3,5-tris(benzimidazolylmethyl)benzene (L). The dynamic and flexible framework of 1 allows it to be entitled as first Hg(II)-based CP belonging to the rare category of CPs that exhibit multistimuli-responsive photoluminescence sensing properties and called as "smart" material. The sensitivity of this material via luminescence quenching method showing "turn off" behavior to a range of stimuli, including anions, solvents, and nitroaromatic compounds (NACs), offers more fine-grained control over its properties. 1 can easily adjust its channel dimensions to encapsulate different guest anions forming complete/partial anion-exchanged materials 1A-1B/1C-1E using NO, BF, OTf, OTs, and PF anions, respectively. Reversible (1A and 1B) and irreversible (1C-1E) anion exchange behaviors were observed for the complete and partial anion-exchanged products, respectively. The noteworthy feature of the anion-exchanged compounds is their anion-triggered luminescent behavior depending on different properties of anions.The excellent emission in water and high hydrolytic stability of 1 allows its use for rapid and efficient fluorescence-based detections of NACs in aquatic system. The uncoordinated pendant benzimidazole moiety in 1 serves as Lewis basic recognition site for trinitrophenol (TNP) detection, and along with electron- and energy-transfer mechanisms, 1 forms a luminescent probe for detection of TNP with low detection limits (0.55 ppm), exhibiting excellent photostability and recyclability. 1 also represents the first reported Hg(II)-based sensory CP material that can discriminate nitrophenol and nitroaniline isomers through fluorescence sensing.
一种新的一维双链光致发光 Hg(II)配位聚合物 (CP),{[Hg(L)]·(ClO)} (1),是使用苯并咪唑取代的三脚架三齿配体 1,3,5-三(苯并咪唑基甲基)苯 (L) 合成的。1 的动态和灵活的框架使其成为第一个基于 Hg(II)的 CP,属于 CP 中罕见的一类,表现出多刺激响应光致发光传感特性,被称为“智能”材料。该材料通过荧光猝灭法的灵敏度表现出对一系列刺激物(包括阴离子、溶剂和硝基芳烃化合物 (NACs))的“关闭”行为,提供了对其性质更精细的控制。1 可以轻松调节其通道尺寸,以封装不同的客体阴离子,形成完整/部分阴离子交换材料 1A-1B/1C-1E,分别使用 NO、BF、OTf、OTs 和 PF 阴离子。完全和部分阴离子交换产物分别观察到可逆(1A 和 1B)和不可逆(1C-1E)阴离子交换行为。阴离子交换化合物的显著特征是它们的阴离子触发发光行为取决于阴离子的不同性质。1 在水中的优异发射和高水解稳定性允许其用于快速高效的基于荧光的水生系统中 NACs 的检测。1 中未配位的苯并咪唑侧基作为三硝基苯酚 (TNP) 检测的路易斯碱性识别位点,并且与电子和能量转移机制一起,1 形成用于检测 TNP 的发光探针,具有低检测限(0.55 ppm),表现出优异的光稳定性和可回收性。1 也是第一个报道的基于 Hg(II)的感应 CP 材料,可通过荧光传感区分硝基苯酚和硝基苯胺异构体。