Suebphanpho Jitti, Boonmak Jaursup
Materials Chemistry Research Center, Department of Chemistry, Faculty of Science, Khon Kaen University Khon Kaen 40002 Thailand
RSC Adv. 2024 Mar 25;14(14):9781-9790. doi: 10.1039/d4ra00500g. eCollection 2024 Mar 20.
A highly selective detection of trace water in organic solvents is urgently required for the chemical industry. In this work, the simple sonochemical method was used for producing a luminescent sensor, [Zn(Hdhtp)(2,2'-bpy)(HO)] (Zn-CP) (Hdhtp = 2,5-dihydroxyterephthalate and 2,2'-bpy = 2,2'-bipyridine). Zn-CP exhibits reversible thermally-induced and methanol-mediated structural transformation. Importantly, Zn-CP has exceptional water sensing performance in both dry methanol and dry ethanol, with high selectivity, wide linear ranges, and a low limit of detection (LOD) of 0.08% (v/v). Upon the incremental addition of water, the luminescent intensities enhanced and shifted, along with the emission color changing from green to greenish yellow. In addition, Zn-CP can detect methanol selectively through turn-on luminescence intensity with LODs of 0.28, 0.52, and 0.35% (v/v) in dry ethanol, dry -propanol, and dry -butanol, respectively. The excited-state proton transfer of linker Hdhtp enol-keto tautomerism and collaboration with structural transformation could be attributed to the sensing mechanism.
化学工业迫切需要一种对有机溶剂中的痕量水进行高选择性检测的方法。在这项工作中,采用简单的声化学方法制备了一种发光传感器[Zn(Hdhtp)(2,2'-bpy)(HO)](Zn-CP)(Hdhtp = 2,5-二羟基对苯二甲酸,2,2'-bpy = 2,2'-联吡啶)。Zn-CP表现出可逆的热诱导和甲醇介导的结构转变。重要的是,Zn-CP在干燥的甲醇和乙醇中均具有出色的水传感性能,具有高选择性、宽线性范围以及0.08%(v/v)的低检测限(LOD)。随着水的逐渐加入,发光强度增强并发生位移,同时发射颜色从绿色变为黄绿色。此外,Zn-CP可以通过开启发光强度来选择性地检测甲醇,在干燥乙醇、干燥丙醇和干燥丁醇中的检测限分别为0.28%(v/v)、0.52%(v/v)和0.35%(v/v)。连接体Hdhtp的激发态质子转移、烯醇-酮互变异构以及与结构转变的协同作用可归因于传感机制。