首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Investigation of lanthanum-strontium-cobalt ferrites using laser ablation inductively coupled plasma-mass spectrometry
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Investigation of lanthanum-strontium-cobalt ferrites using laser ablation inductively coupled plasma-mass spectrometry

机译:利用激光烧蚀电感耦合等离子体质谱法研究镧 - 锶 - 钴铁氧体

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In the present study, suitability of laser-ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) for characterization of the purity and homogeneity of lanthanum-strontium-cobalt ferrite (LSCF) ceramic microsamples with general formula La1-xSrxFe0.025Co0.975O3 (0.00 <= x <= 0.50) was studied through determination of their Sr:La ratios as well as Sr content either in depth or line profiling mode. The Sr content of the LSCF samples expressed as weight percent ranged between 5.8% and 9.7% in the case of wet chemical ICP-MS analysis, while theoretical values varied from 5.5% to 9.4%. In the case of LA-ICP-MS, relative standard deviation of the La-normalized Sr intensities was sufficient to characterize the homogeneity of the studied samples. Major and trace element (Mn, Ni, Cu, Mg, Al, Ba) concentrations could be detected at medium resolution of the applied sector field ICP-MS instrument after microwave-assisted acid digestion. For depth and line profiling, a successful approach consisted of the normalization of intensities of Sr, Fe and Co with the corresponding La counts. For the determination of the elemental ratios of La and Sr, the methods involving LA were in good agreement with theoretical values by standardization to an in-house standard corresponding to the LSCF sample having the highest x value (i.e., 0.50) checked by wet chemical ICP-MS measurements. Thus, assessment of fine scale doping of synthesized perovskite type of microsamples could be achieved by the proposed LA-ICP-MS based on a novel calibration approach applying an in-house perovskite standard. Therefore, LA-ICP-MS can be recommended for quality control of perovslcite-based products.
机译:在本研究中,激光烧蚀电感耦合等离子体质谱(La-ICP-MS)的适合性,用于表征镧 - 锶 - 钴铁氧体(LSCF)陶瓷微塑料的纯度和均匀性,具有通式La1-XsrxFe0.025Co0。通过测定其Sr:La比例,在深度或线分析模式下测定97503(0.00 <= x <= 0.50)。在湿化学ICP-MS分析的情况下,LSCF样品的SR含量表示为重量百分比的百分比为5.8%和9.7%,而理论值从5.5%变化至9.4%。在La-ICP-MS的情况下,La标准化的Sr强度的相对标准偏差足以表征所研究样品的均匀性。在微波辅助酸消化后,可以在所应用的扇区ICP-MS仪器的介质分辨率下检测主要和痕量元素(Mn,Ni,Cu,Mg,Al,Ba)浓度。对于深度和线路分析,成功的方法包括与相应的LA计数的SR,FE和CO强度的标准化。为了确定La和Sr的元素比,涉及La的方法与理论值与理论值吻合良好,通过标准化对应于湿化学物质检查最高X值(即0.50)的LSCF样品的内部标准ICP-MS测量。因此,基于应用内部钙钛矿标准的新型校准方法,所提出的LA-ICP-MS可以实现合成的钙钛矿类型微酰胺的细量掺杂。因此,可以建议La-ICP-MS用于基于Perovslcite的产品的质量控制。

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