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Colorimetric detection of hypochlorite based on the morphological changes of silver nanoprisms to spherical nanoparticles

机译:基于银纳米载体对球形纳米粒子的形态学变化的比色检测

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摘要

In this work, we have developed a simple, rapid, sensitive and selective colorimetric method for the quantitative determination of hypochlorite (ClO-) ions by using triangular silver nanoprisms (AgNPRs) as a colorimetric probe. The synthesized AgNPRs were characterized by UV-visible absorption and high resolution transmission electron microscopy (HR-TEM) measurements. Upon the successive addition of increasing concentrations of ClO- to AgNPRs, the absorption intensity of AgNPRs at 716 nm showed a gradual decrease with a significant blue shift. This phenomenon was accompanied by simultaneous enhancement in the absorption intensity near the in-plane quadrupole band at 470 nm along with a rapid color change of the AgNPR solution from blue to yellow. The observed spectral and color changes are attributed to ClO induced morphological transformation from triangular AgNPRs to spherical particles. The physiochemical and morphological characteristics of AgNPRs in the absence and presence of ClO- were evidenced by HR-TEM, DLS and zeta potential measurements. The selectivity of the proposed assay was tested for its performance in the presence of other relevant interfering common anions and cations. It was observed that the presence of other interfering ions did not evoke any change in the color and absorption spectral profile of AgNPRs. The limit of detection (LOD) of the present method was calculated to be 2.50 x 10(-10) mol dm(-3) with a wide linear range of 2.00 x 10(-7) mol dm(-3) to 12.00 x 10(-7) mol dm(-3). The applicability of the proposed method was ascertained by performing the colorimetric assay for ClO- in real water samples such as tap water and swimming pool water.
机译:在这项工作中,我们开发了一种简单,快速,灵敏和选择性的比色方法,用于通过使用三角银纳米烃(AgNPRS)作为比色探针进行定量测定次氯酸盐(ClO-)离子。通过UV可见的吸收和高分辨率透射电子显微镜(HR-TEM)测量,其特征在于合成的AgNPRS。在连续添加增加浓度的CLO-至AgNPR时,716nm处Agnprs的吸收强度显示出逐渐减小,随着显着的蓝移。这种现象伴随着在470nm处的平面内极节带附近的吸收强度的同时增强,以及从蓝色到黄色的AgNPR溶液的快速变化。观察到的光谱和颜色变化归因于CLO诱导的来自三角形Agnprs至球形颗粒的形态转化。通过HR-TEM,DLS和Zeta电位测量证明了缺乏和存在的AgNPRS的生理化学和形态特征。在其他相关干扰常见阴离子和阳离子的存在下测试了所提出的测定的选择性。观察到,其他干扰离子的存在并未引起AGNPRS的颜色和吸收光谱分布的任何变化。将本方法的检测极限(LOD)计算为2.50×10(-10)摩尔DM(-3),宽线性范围为2.00×10(-7)摩尔DM(-3)至12.00 x 10(-7)摩尔DM(-3)。通过在实际水样中进行比色测定来确定所提出的方法的适用性,例如自来水和游泳池水。

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