Cui Fengling, Wang Li, Cui Yanrui
School of Chemistry and Environmental Science, Key Laboratory for Environmental Pollution Control Technology of Henan Province, Henan Normal University, Xinxiang 453007, PR China.
J Pharm Biomed Anal. 2007 Feb 19;43(3):1033-8. doi: 10.1016/j.jpba.2006.10.003. Epub 2006 Dec 20.
A method for the determination of bismuth in pharmaceutical products using methyltriphenylphosphonium bromide as a molecular probe based on the resonance light scattering (RLS) technique was developed. In the presence of Tween-20, bismuth reacts with a large excess of I(-) to form BiI(4), which further reacts with methyltriphenylphosphonium bromide (MTPB) to form an ion-association compound. This resulted in a significant enhancement of RLS intensity and the appearance of the corresponding RLS spectral characteristics. The enhanced RLS intensity was directly proportional to the concentration of Bi(III) in the range of 0.001-1.50 microg/ml for the system. The detection limit was 0.98 ng/ml. The characteristics of RLS spectra of the complex, the optimum conditions and the influencing factors were investigated. The method has high selectivity and was applied to the determination of Bi(III) in pharmaceutical products with satisfactory results, which were in agreement with those of the official method and atomic absorbance spectrometry (AAS).
建立了一种基于共振光散射(RLS)技术,以甲基三苯基溴化膦为分子探针测定药品中铋的方法。在吐温-20存在下,铋与大量过量的I(-)反应形成BiI(4),其进一步与甲基三苯基溴化膦(MTPB)反应形成离子缔合化合物。这导致RLS强度显著增强并出现相应的RLS光谱特征。对于该体系,增强的RLS强度在0.001 - 1.50μg/ml范围内与Bi(III)的浓度成正比。检测限为0.98 ng/ml。研究了该配合物的RLS光谱特征、最佳条件及影响因素。该方法具有高选择性,应用于药品中Bi(III)的测定,结果令人满意,与法定方法和原子吸收光谱法(AAS)的结果一致。