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由乙基(羟乙基)纤维素和硅胶气凝胶组成的混合薄膜,该气凝胶用荧光化学传感器官能化,用于水中汞的检测。

Hybrid films composed of ethyl(hydroxyethyl)cellulose and silica xerogel functionalized with a fluorogenic chemosensor for the detection of mercury in water.

机构信息

Departamento de Química, Universidade Federal de Santa Catarina, UFSC, Florianópolis, SC 88040-900, Brazil.

Departamento de Química, Universidade Federal de Santa Catarina, UFSC, Florianópolis, SC 88040-900, Brazil.

出版信息

Carbohydr Polym. 2023 Mar 15;304:120480. doi: 10.1016/j.carbpol.2022.120480. Epub 2022 Dec 22.

Abstract

Ethyl(hydroxyethyl)cellulose (EHEC) and a silica-based xerogel (SBX) were functionalized with a (18-crown-6)-styrylpyridine precursor (1) to obtain the modified polymers EHEC-1 and SBX-1, respectively. Films were obtained and the resulting materials were used as fluorogenic devices for the detection of Hg in water. The films produced from EHEC-1 showed high water retention, making it difficult to apply as a reusable optical chemosensor. Since SBXs are recognized in the literature for their hydrophobicity, a hybrid film composed of EHEC and SBX-1 which did not show water retention was produced and characterized. This system showed rapid response time, outstanding selectivity compared to several other studied metal ions, and sensitivity for the detection of Hg in water. The detection limit for this material using fluorescence technique was 2 ppb (∼10 mol L). The reversibility of the complex formed between EHEC-SBX-1 film and Hg was demonstrated by the addition of cysteine to the medium. The result obtained also allowed the assembly of INHIBIT and IMPLICATION molecular logic gates, using Hg and cysteine as inputs. The results described in this article have important significance in the development of novel reversible fluorogenic chemosensors and adsorbent materials for the effective removal of Hg ions.

摘要

乙基(羟乙基)纤维素(EHEC)和基于二氧化硅的气凝胶(SBX)分别用(18-冠-6)-苯乙烯吡啶前体(1)进行功能化,得到修饰聚合物 EHEC-1 和 SBX-1。获得了薄膜,并且将得到的材料用作水中 Hg 的荧光检测装置。由 EHEC-1 产生的薄膜具有高保水性能,难以用作可重复使用的光学化学传感器。由于文献中已经认识到 SBX 具有疏水性,因此制备了一种由 EHEC 和 SBX-1 组成的混合薄膜,该薄膜不具有保水性,并对其进行了表征。该系统表现出快速的响应时间,与几种其他研究的金属离子相比具有出色的选择性,并且对水中 Hg 的检测具有灵敏度。使用荧光技术检测该材料的检测限为 2 ppb(约 10 mol L)。通过向介质中添加半胱氨酸,证明了 EHEC-SBX-1 薄膜与 Hg 之间形成的配合物的可逆性。所得结果还允许使用 Hg 和半胱氨酸作为输入,组装 INHIBIT 和 IMPLICATION 分子逻辑门。本文描述的结果在开发新型可逆荧光化学传感器和吸附材料以有效去除 Hg 离子方面具有重要意义。

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