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A novel sensing membrane for the determination of ferric ions in aqueous solutions

机译:一种测定水溶液中铁离子的新型传感膜

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A new fluorescent sensing membrane, in which a naphthalimide derivative containing two long hydrophobic hydrocarbon chains, amphiphilic molecule castor oil polyoxyethylene ether and PVC were respectively used as the fluorescent indicator, plasticizer and matrix, for specific recognition of Fe3+ was prepared based on the physical entrapment method. The results show that the fluorescence of the sensing membrane is selectively quenched by Fe3+ ions over other common metal ions in aqueous solutions. A good linear response range of the sensing membrane is achieved from 5.0 ?— 10a?’5 to 1.5 ?— 10a?’3 M (R2 = 0.9906), with a detection limit of 4.0 ?— 10a?’7 M. The sensing membrane shows good reversibility, a fast response of less than 20 s and satisfactory stability with a relative standard deviation of ?±1.5%. Moreover, it was successfully applied in the detection of Fe3+ in tap water with recovery in the range of 97.6a€“101.2%.
机译:基于物理包埋法,制备了一种新的荧光传感膜,其中分别使用包含两条长疏水烃链的萘二甲酰亚胺衍生物,两亲分子蓖麻油聚氧乙烯醚和PVC作为荧光指示剂,增塑剂和基质,以特异性识别Fe3 +。方法。结果表明,在水溶液中,Fe3 +离子比其他常见金属离子有选择地猝灭传感膜的荧光。感测膜的良好线性响应范围可达到5.0?-10a?'5至1.5?-10a?'3 M(R2 = 0.9906),检测极限为4.0?-10a?'7M。膜显示出良好的可逆性,不到20秒的快速响应和令人满意的稳定性,相对标准偏差为±1.5%。而且,它已成功用于自来水中Fe3 +的检测,回收率在97.6a-101.2%之间。

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