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Chemical analysis of size-tailored magnetic colloids using slurry nebulization in ICP-OES

机译:在ICP-OES中使用浆料雾化对尺寸定制的磁性胶体进行化学分析

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In this work, inductively coupled plasma emission spectroscopy was utilized to directly determine the chemical composition of magnetic fluids constituted of size-sorted ferrite nanoparticles in aqueous solution. Nickel and cobalt nanoferrites were chemically synthesized following a bottom-up route and dispersed under various pH conditions. Size and structural characteristics of nanograins were investigated by X-ray diffraction using a synchrotron source. Chemical analysis was then carried out by directly introducing diluted magnetic fluid samples (slurries) into the spectrometer. To achieve reliable measurements, sample conditions and apparatus parameters were carefully investigated. Slurry stability must be optimized in order to obtain reproducible and accurate analysis. The instrument must also be calibrated to minimize the difference between the signal produced by slurries and that of aqueous ordinary solutions. Furthermore, slurry sample introduction offers many advantages over conventional sample digestion, including reduced sample pretreatment time, less possibility of contamination and the use of direct calibration with aqueous solutions.
机译:在这项工作中,利用电感耦合等离子体发射光谱法直接确定了由水溶液中按大小排序的铁氧体纳米粒子构成的磁流体的化学成分。镍和钴纳米铁氧体是按照自下而上的方法化学合成的,并在各种pH条件下分散。使用同步辐射源通过X射线衍射研究了纳米颗粒的尺寸和结构特征。然后通过将稀释的磁性流体样品(浆液)直接引入光谱仪中进行化学分析。为了获得可靠的测量结果,仔细研究了样品条件和仪器参数。必须优化浆液稳定性,以获得可重复且准确的分析。还必须对仪器进行校准,以最大程度地减小浆料产生的信号与普通水溶液产生的信号之间的差异。此外,与常规样品消解相比,引入浆液样品具有许多优势,包括减少样品的预处理时间,较少的污染可能性以及使用水溶液进行直接校准。

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