Guo Yanhui, Zhu Jiayi, Dai Yumei, Chen Long, Li Weibing, Yuan Zihang, Zhou Jie, Tang En
Minnan Science and Technology University China
RSC Adv. 2025 Jan 27;15(4):2645-2650. doi: 10.1039/d4ra08065c. eCollection 2025 Jan 23.
Severe environmental contamination can result from high concentrations of iron ions, which can have a detrimental impact on human health and well-being. Consequently, it is imperative to develop novel materials that can address environmental issues. Metal-organic frameworks (MOFs) possess unique properties that render them efficient fluorescent probes for the rapid and precise detection of these pollutants. A diverse array of MOF probes have been developed to detect iron ions. Nevertheless, their practical application is significantly impeded by the high production cost, which is a critical factor. This raises the question: why not implement a cost-effective, sensitive detector instead? Our research group has developed a novel MOF material, [Zn(bpy)(APA)(HO)] , that is specifically designed for MOF-based "off" sensors in aqueous media. This material not only demonstrates high sensitivity, and is manufactured from low-cost raw materials, but it also holds significant commercial potential, with production costs that are 98.4% lower than those of existing alternatives.
高浓度铁离子会导致严重的环境污染,这会对人类健康和福祉产生不利影响。因此,开发能够解决环境问题的新型材料势在必行。金属有机框架(MOF)具有独特的性质,使其成为用于快速精确检测这些污染物的高效荧光探针。已经开发出各种各样的MOF探针来检测铁离子。然而,高生产成本严重阻碍了它们的实际应用,这是一个关键因素。这就提出了一个问题:为什么不采用一种经济高效、灵敏的探测器呢?我们的研究小组开发了一种新型MOF材料[Zn(bpy)(APA)(HO)],它是专门为水性介质中基于MOF的“关闭”传感器设计的。这种材料不仅灵敏度高,而且由低成本原材料制成,还具有巨大的商业潜力,其生产成本比现有替代品低98.4%。