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Green synthesis of silver nanoparticles in xylan solution via Tollens reaction and their detection for Hg2+

机译:绿色合成木聚糖的银纳米粒子通过假言推理反应及其检测解决方案

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This work reported a facile and green method to prepare highly stable and uniformly distributed Ag nanoparticles (AgNPs), in which a biopolymer xylan was used as the stabilizing and reducing agent via the Tollens reaction under microwave irradiation. Different variables were evaluated to optimize the reaction conditions. Complete characterization was performed using UV-Vis, XRD, TEM, size distribution analysis and XPS. The results revealed that AgNPs were well dispersed with diameters of 20-35 nm due to the packing of xylan. The optimal conditions were as follows: microwave irradiation temperature was 60-70 degrees C, microwave power was 800 W, microwave time was 30 min, the ratio of xylan to AgNO3 was 50 mg: 0.13 mmol, and ammonia concentration was 2%. In addition, the AgNPs were collected via highspeed centrifugal separation, and the supernatant was tested by HPAEC, GPC, FT-IR, and NMR. By comparing the structure of xylan before and after the reaction, the reaction mechanism was discussed. It was noted that the xylan-AgNPs composites showed high selectivity and sensitivity for Hg2+ detection. The other 15 metal ions used had no obvious effect on the detection of Hg2+, and the limit of detection (LOD) was 4.6 nM, which is lower than the allowed maximum level of 30 nM for drinking water by WHO. In addition, the xylan-AgNPs composites can be applied for Hg2+ detection in real water samples. This study provides a novel way for the high-value utilization of a rich biomass resource, and a green method for the synthesis of AgNPs for the selective and sensitive detection of harmful heavy metals.
机译:这项工作报道肤浅和绿色的方法准备高度稳定和均匀分布Ag纳米颗粒(AgNPs),生物聚合物木聚糖是作为稳定和减少代理通过微波下的假言推理反应辐照。优化反应条件。描述了利用紫外- XRD、TEM、大小分布分析和XPS。结果表明,AgNPs分散直径在20 - 35 nm的包装木聚糖。微波辐射温度是60 - 70摄氏度,微波功率为800 W,微波炉时间是30分钟,木聚糖比硝酸银50毫克:0.13更易,氨浓度2%。高速离心分离,上层清液由HPAEC测试,GPC,傅立叶变换红外光谱,核磁共振。和之后的反应,反应机理进行了讨论。复合材料表现出高选择性和Hg2 +检测灵敏度。金属离子没有明显的影响Hg2 +检测,检测的极限(LOD)是4.6海里,这是低于允许的最大程度的30 nM的饮用水。此外,xylan-AgNPs复合材料申请Hg2 +实际水样检测。这项研究提供了一种新颖的方式的高附加值利用丰富的生物质资源,绿色的合成方法AgNPs选择性和敏感的检测有害重金属。

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