Kuppadakkath Geethanjali, Jayabhavan Sreejith Sudhakaran, Damodaran Krishna K
Department of Chemistry, Science Institute, University of Iceland, Dunhagi 3, 107 Reykjavík, Iceland.
Molecules. 2024 May 5;29(9):2149. doi: 10.3390/molecules29092149.
We modified -symmetric benzene-1,3,5--amide (BTA) by introducing flexible linkers in order to generate an N-centered BTA (N-BTA) molecule. The N-BTA compound formed gels in alcohols and aqueous mixtures of high-polar solvents. Rheological studies showed that the DMSO/water (1:1, /) gels were mechanically stronger compared to other gels, and a similar trend was observed for thermal stability. Powder X-ray analysis of the xerogel obtained from various aqueous gels revealed that the packing modes of the gelators in these systems were similar. The stimuli-responsive properties of the N-BTA towards sodium/potassium salts indicated that the gel network collapsed in the presence of more nucleophilic anions such as cyanide, fluoride, and chloride salts at the MGC, but the gel network was intact when in contact with nitrate, sulphate, acetate, bromide, and iodide salts, indicating the anion-responsive properties of N-BTA gels. Anion-induced gel formation was observed for less nucleophilic anions below the MGC of N-BTA. The ability of N-BTA gels to act as an adsorbent for hazardous anionic and cationic dyes in water was evaluated. The results indicated that the ethanolic gels of N-BTA successfully absorbed methylene blue and methyl orange dyes from water. This work demonstrates the potential of the N-BTA gelator to act as a stimuli-responsive material and a promising candidate for water purification.
我们通过引入柔性连接基对对称苯-1,3,5-三酰胺(BTA)进行了修饰,以生成一种以氮为中心的BTA(N-BTA)分子。N-BTA化合物在醇类和高极性溶剂的水性混合物中形成凝胶。流变学研究表明,与其他凝胶相比,二甲基亚砜/水(1:1,v/v)凝胶的机械强度更高,热稳定性也呈现出类似趋势。对从各种水性凝胶中获得的干凝胶进行粉末X射线分析表明,这些体系中凝胶剂的堆积模式相似。N-BTA对钠/钾盐的刺激响应特性表明,在最低凝胶浓度(MGC)下,当存在更多亲核阴离子如氰化物、氟化物和氯化物盐时,凝胶网络会坍塌,但当与硝酸盐、硫酸盐、醋酸盐、溴化物和碘化物盐接触时,凝胶网络保持完整,这表明N-BTA凝胶具有阴离子响应特性。在低于N-BTA的MGC时,观察到亲核性较弱的阴离子会诱导凝胶形成。评估了N-BTA凝胶作为水中有害阴离子和阳离子染料吸附剂的能力。结果表明,N-BTA的乙醇凝胶成功地从水中吸附了亚甲基蓝和甲基橙染料。这项工作证明了N-BTA凝胶剂作为刺激响应材料的潜力以及作为水净化的有前途的候选材料。