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    辉光放电质谱法测定高纯碲镉汞粉末中62种潜在杂质元素的含量

    Determination of 62 Potential Impurity Elements in High-Purity Mercury Cadmium Telluride Powder by Glow Discharge Mass Spectrometry

    • 摘要: 为全面评估高纯碲镉汞粉末中杂质元素的含量,在系统消除质谱干扰并优化溅射时间、样品加载量、放电电流和放电电压等试验条件的基础上,开展了题示研究。采用铟条作为辅助阴极材料负载高纯碲镉汞粉末(样品加载量约为20 mg),在溅射时间50 min、放电电流1.6 mA、放电电压850 V的参数条件下进行辉光放电质谱分析。通过质谱干扰评估与空白试验,识别出碘、铯、镧、铈、钕、铊、金、钽等8种受干扰元素,并采用基于各元素与基体元素碲的丰度比、峰面积比和相对灵敏度因子(RSF)比的校正公式,计算了62种潜在杂质元素的相对含量。结果表明:62种潜在杂质元素的检出限为0.01~1 μg·g−1;将该方法应用于实际样品分析时,检出了锂、钠、镁、铝、硅、磷、硫、氯、钾、钙、钛、铁、硒、锆等14种杂质元素;在阴极铜标准样品分析中,检出元素(除锌元素外)的相对误差绝对值不大于50%,且相对标准偏差(n=9)不超过15%。

       

      Abstract: To comprehensively evaluate the impurity element content in high-purity mercury cadmium telluride powder, this study mentioned by the title was conducted after systematically eliminating mass spectrometric interferences and optimizing test conditions including sputtering time, sample loading amount, discharge current, and discharge voltage. Using an indium strip as the auxiliary cathode material to load the high-purity mercury cadmium telluride powder (approximately 20 mg of sample loading amount) , glow discharge mass spectrometric analysis was performed under the parameter conditions (50 min of sputtering time, 1.6 mA of discharge current, and 850 V of discharge voltage) . Through mass spectrometric interference evaluation and blank tests, 8 interfered elements (iodine, cesium, lanthanum, cerium, neodymium, thallium, gold, and tantalum) were identified, and the relative contents of 62 potential impurity elements were calculated using the correction formula based on the abundance ratios, peak area ratios and relative sensitivity factor (RSF) ratios of the impurity elements to the matrix element tellurium. It was shown that the detection limits for the 62 potential impurity elements were found in the range of 0.01‒1 μg·g−1. When the method was applied to actual sample analysis, 14 impurity elements (lithium, sodium, magnesium, potassium, aluminum, silicon, phosphorus, sulfur, chlorine, calcium, titanium, iron, selenium, zirconium) were detected. In the analysis of a cathode copper standard sample, the absolute values of relative errors for all detected elements (except zinc element) were not greater than 50%, and RSDs (n=9) did not exceed 15%.

       

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