共查询到19条相似文献,搜索用时 125 毫秒
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鲁米诺-铁氰化钾化学发光体系测定甲基多巴 总被引:1,自引:0,他引:1
本文研究发现,铁氰化钾在碱性条件能氧化鲁米诺产生微弱的化学发光,而甲基多巴能大大增强该体系的发光强度.基于此,结合流动注射技术,建立起一种直接测定甲基多巴的流动注射化学发光新方法.该方法的检出限为5.7×10-10g/mL,甲基多巴浓度在1.0×10-9~1.0×10-7g/mL范围内与发光强度呈良好的线性关系.对1.0×10-9g/mL的甲基多巴平行测定11次,其相对标准偏差为2.3%.利用该方法对甲基多巴片剂含量的测定,结果令人满意. 相似文献
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鲁米诺-[铁氰化钾-亚铁氰化钾]-酚磺乙胺化学发光体系 总被引:3,自引:0,他引:3
实验发现 ,酚磺乙胺与鲁米诺在碱性溶液中可产生弱的化学发光 ,铁氰化钾和亚铁氰化钾的存在对该化学发光反应具有很强的催化作用。基于此 ,建立了基于鲁米诺 铁氰化钾 /亚铁氰化钾 酚磺乙胺体系测定酚磺乙胺的流动注射化学发光新方法。酚磺乙胺浓度在 4 .0× 10 -6~ 1.0× 10 -4g/L范围内与化学发光强度具有线性关系。该方法的检出限为 1× 10 -6g/L ,相对标准偏差为 1.4 % (2 .0× 10 -5g/L酚磺乙胺溶液 ,n =11)。该方法用于止血敏注射液中酚磺乙胺的含量测定 ,结果令人满意。同时 ,还对可能的化学发光反应机理进行了初步探讨 相似文献
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鲁米诺-过氧化氢化学发光体系测定利福平 总被引:3,自引:0,他引:3
基于鲁米诺在碱性条件下可以被H2O2氧化产生化学发光,利福平对此化学发光具有增敏作用这一现象,结合流动注射技术建立了一种直接测定利福平的流动注射化学发光新方法.该方法的线性范围在1.0×10-6~2.0×10-8g·mL-1,检出限为3.0×10-9g·mL-1,对5.0×10-7g·mL-1的利福平连续进行11次平行测定,其相对标准偏差为3.0%.该法已成功测定了利福平胶囊及眼药水中利福平的含量. 相似文献
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研究发现,铁氰化钾在碱性条件下能氧化鲁米诺产生微弱的化学发光,硫酸特布他林能大大增强该发光强度。在此基础上,结合流动注射技术,建立了一种直接测定硫酸特布他林的流动注射化学发光分析法。该方法的检出限为5.7×10-10g/mL,硫酸特布他林质量浓度在1.0×10-9~1.0×10-7g/mL范围内与发光强度呈良好的线性关系,相对标准偏差为3.3%(硫酸特布他林1.0×10-8g/mL,n=11)。利用该方法对特布他林片剂和针剂含量的测定,结果令人满意。 相似文献
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The effect of silver colloidal nanoparticles (AgNPs) on the luminol–isoniazid system was investigated. It was found that AgNPs could act as a nanocatalyst on the luminol–isoniazid system to generate chemiluminescence (CL). The CL emission spectrum of the luminol–isoniazid–AgNPs system showed a peak with a maximum at 425 nm. It was suggested that the luminophor species was the excited state 3-aminophthalate. The reduction of dissolved O2 to H2O2 by isoniazid and decomposition of H2O2 to the oxygen-related radicals were attributed to the catalytic effect of AgNPs. Under optimized conditions, the CL signal intensity was linear with the isoniazid concentration in the range of 10–1000 ng mL− 1, with the correlation coefficient of 0.9996. The limit of detection was 2.7 ng mL− 1 isoniazid. The relative standard deviations for seven repeated measurements of 60 and 200 ng mL− 1 isoniazid were 1.4 and 2.4%, respectively. The effect of potent interfering compounds on the CL signal intensity of the proposed luminol–isoniazid–AgNPs system was investigated. The proposed method was successfully applied to the determination of isoniazid in a pharmaceutical sample. 相似文献
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A simple chemiluminometric method using flow injection has been developed for the determination of paracetamol (acetaminophen), based on the chemiluminescence produced by the reduction of tris(2,2′-bipyridyl)ruthenium(III). The latter is obtained by oxidation of tris(2,2′-bipyridyl)ruthenium(II) by potassium permanganate in dilute sulphuric acid in the presence of paracetamol. A standard or sample solution was injected into the ruthenium(II) stream (flow rate 1.5 ml min−1) which was then merged with potassium permanganate in dilute sulphuric acid stream (flow rate 0.5 ml min−1). The chemiluminescence intensity is enhanced by the presence of manganese(II) ions. Under the optimum conditions, a linear calibration graph was obtained over the range of 0.3-50.0 μg ml−1 and the detection limit was 0.2 μg ml−1 (s/n = 3). The relative standard deviation of the proposed method calculated from 20 replicate injections of 5.0 μg ml−1 paracetamol was 1.1%. The sample throughput was 90 h−1. The method was successfully applied to the determination of paracetamol in commercial pharmaceutical formulations. 相似文献