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采用钕掺杂聚苯胺负载层状双氢氧化物纳米复合材料对废水中六价铬的选择性吸附和超快荧光检测。

Selective adsorption and ultrafast fluorescent detection of Cr(VI) in wastewater using neodymium doped polyaniline supported layered double hydroxide nanocomposite.

机构信息

Department of Chemistry, Aligarh Muslim University, AMU, Aligarh 202002, India.

Department of Chemistry, Aligarh Muslim University, AMU, Aligarh 202002, India.

出版信息

J Hazard Mater. 2021 Aug 15;416:125754. doi: 10.1016/j.jhazmat.2021.125754. Epub 2021 Mar 26.

DOI:10.1016/j.jhazmat.2021.125754
PMID:33813294
Abstract

Neodymium-doped polyaniline supported Zn-Al layered double hydroxide (PANI@Nd-LDH) nanocomposite has been prepared via an ex-situ oxidative polymerization process. The as-prepared nanocomposite shows selective fluorescence detection and adsorption of hexavalent chromium Cr(VI) within a short period. The fluorescence intensity of PANI@Nd-LDH decreases linearly with Cr(VI) concentrations ranging from 200 ppb to 1000 ppb with a limit of detection (LOD) of 1.5 nM and a limit of quantification (LOQ) of 96 nM. The sensing mechanism can be ascribed by the inner filter effect of Cr(VI), the intercalation of Cr(VI) within the intergallery region of LDH, and the synergistic affinity of metal ions along with the polymer chain for Cr(VI). The adsorption performance of PANI@Nd-LDH nanocomposite is evaluated for Cr(VI) from wastewaters, which displayed high removal capacity towards Cr(VI) (219 mg/g) as compared on bare Nd-LDH (123 mg/g) and LDH (88 mg/g) respectively. The adsorption of Cr(VI) on PANI@Nd-LDH depends on the pH of the aqueous solution. The adsorption isotherm and kinetics are supported by the Langmuir model and pseudo-second-order model, respectively. Owing to the highly sensitive detection and adsorption of Cr(VI) from aqueous water samples demonstrated the potential application of PANI@Nd-LDH as an excellent environmental probe can be exploited.

摘要

掺钕聚苯胺负载 Zn-Al 层状双氢氧化物(PANI@Nd-LDH)纳米复合材料通过原位氧化聚合过程制备。所制备的纳米复合材料在短时间内对六价铬 Cr(VI) 表现出选择性荧光检测和吸附。PANI@Nd-LDH 的荧光强度随 Cr(VI) 浓度线性降低,范围从 200 ppb 到 1000 ppb,检测限(LOD)为 1.5 nM,定量限(LOQ)为 96 nM。传感机制可以归因于 Cr(VI) 的内滤效应、Cr(VI) 在 LDH 夹层区域内的插层以及金属离子与聚合物链对 Cr(VI) 的协同亲和力。PANI@Nd-LDH 纳米复合材料对废水中 Cr(VI) 的吸附性能进行了评价,与裸 Nd-LDH(123 mg/g)和 LDH(88 mg/g)相比,其对 Cr(VI) 的去除能力较高(219 mg/g)。Cr(VI) 在 PANI@Nd-LDH 上的吸附取决于水溶液的 pH 值。吸附等温线和动力学分别由 Langmuir 模型和准二级模型支持。由于从水样中对 Cr(VI) 的高灵敏度检测和吸附,PANI@Nd-LDH 作为一种优秀的环境探针具有潜在的应用价值。

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