Shrivas Kamlesh, Maji Pathik, Dewangan Khemchand
Department of Chemistry, Guru Ghasidas Vishwavidyalaya, Koni, Bilaspur, CG 495009, India.
Department of Chemistry, Guru Ghasidas Vishwavidyalaya, Koni, Bilaspur, CG 495009, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2017 Feb 15;173:630-636. doi: 10.1016/j.saa.2016.10.020. Epub 2016 Oct 17.
We report a simple, selective and sensitive colorimetric assay for onsite determination of Ni(II) and Ba(II) from river, pond and tap water samples using the localized surface plasmon resonance (LSPR) of malonate capped gold nanoparticles (AuNPs) as a chemical sensor. The method is based on the color change and red shift of LSPR absorption band in visible region that caused by the aggregation of NPs because of the coordination complex between Ba(II) and Ni(II) with carboxylate ions of malonate capped AuNPs. The determination of Ba(II) and NI(II) in a same sample was performed by masking one of the analyte at a time, EDTA was used to mask Ni(II) for detection of Ba(II) and dilute HSO was used to mask the Ba(II) for detection of Ni(II). The linear range for quantitative determination of Ba(II) and NI(II) were found in the range of 15-500 and 10-500ngmL with a limit of detection of 5 and 3ngmL, respectively. The advantages of the AuNPs based chemical sensor is found to be simple, rapid and sensitive as well as it can be applied at the sample source for trace detection of Ba(II) and Ni(II) in various environmental samples.
我们报道了一种简单、选择性好且灵敏的比色测定法,该方法利用丙二酸包覆的金纳米颗粒(AuNPs)的局域表面等离子体共振(LSPR)作为化学传感器,用于现场测定河水、池塘水和自来水样品中的Ni(II)和Ba(II)。该方法基于可见光区域LSPR吸收带的颜色变化和红移,这是由于Ba(II)和Ni(II)与丙二酸包覆的AuNPs的羧酸根离子形成配位络合物导致纳米颗粒聚集所引起的。通过每次掩蔽一种分析物来测定同一样品中的Ba(II)和Ni(II),使用EDTA掩蔽Ni(II)以检测Ba(II),使用稀HSO掩蔽Ba(II)以检测Ni(II)。Ba(II)和Ni(II)定量测定的线性范围分别为15 - 500和10 - 500 ng/mL,检测限分别为5和3 ng/mL。基于AuNPs的化学传感器的优点是简单、快速、灵敏,并且可以应用于样品源,用于各种环境样品中Ba(II)和Ni(II)的痕量检测。