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首页> 外文期刊>Chemical engineering journal >Uniform manganese-loaded titanium dioxide nanotube arrays for accurate detection of trace Cd2+ in water, soil and tea: Enhanced stability and sensitivity
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Uniform manganese-loaded titanium dioxide nanotube arrays for accurate detection of trace Cd2+ in water, soil and tea: Enhanced stability and sensitivity

机译:均匀的锰负载二氧化钛纳米管阵列,用于精确地检测水,土壤和茶叶中的痕量CD2 +:增强稳定性和敏感性

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摘要

The poor stability of the signal obtained on nonuniform substrate, which results from the obvious difference in the size of ablation spots, the uneven distribution of enriched analytes, and the severe matrix effect, seriously affecting the practical application of electrochemical preconcentration supported laser-induced breakdown spectroscopy (ECP-LIBS). Here, self-organizing and ordered manganese loaded titanium dioxide nanotube arrays (Mn-TiO2 NTAs) on a titanium foil was employed as the working electrode to overcome the problem. The MnTiO2 NTAs were of equal height, hollow-structured and evenly arranged on the electrode, leading to uniform and shallow ablation spots after Gaussian laser irradiation (proven by MATLAB simulation), which reduced the matrix effect. As a result, a high sensitivity of 13347.7 counts mu M-1 and low LOD of 0.01 mu M for Cd2+ were achieved. Most importantly, the self-organizing and ordered Mn-TiO2 NTAs electrode exhibited outstanding stability and reproducibility (relative standard deviation, RSD, was less than 5%), while the Mn-TiO2 electrode modified through the drip coating method showed poor stability (RSD was greater than 20%). The proposed method perfectly achieved the anti-interference and accurate detection of Cd2+ in water, soil and tea.
机译:在非均匀基材上获得的信号的稳定性差,这是由消融斑点的尺寸的明显差异,富集分析物的不均匀分布,以及严重的基质效应,严重影响电化学前浓度的实际应用支持的激光诱导的击穿光谱学(ECP-LIBS)。这里,使用在钛箔上的自组织和有序锰负载的二氧化钛(Mn-TiO2 NTA)作为工作电极以克服该问题。 MnTiO2 NTA具有相同的高度,中空结构且布置在电极上,导致高斯激光照射(通过MATLAB仿真证明)之后的均匀和浅的消融点,这降低了基质效应。结果,实现了13347.7的高灵敏度um-1和0.01μm的低距离用于CD2 +。最重要的是,自组织和有序的Mn-TiO2 NTAS电极表现出出色的稳定性和再现性(相对标准偏差,RSD,小于5%),而通过滴注涂层方法改性的Mn-TiO2电极显示出差的稳定性差(RSD大于20%)。所提出的方法完美地实现了水,土壤和茶中CD2 +的抗干扰和准确检测。

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