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篇名
The analytical determination and electrochemiluminescence behavior of amoxicillin
並列篇名
The analytical determination and electrochemiluminescence behavior of amoxicillin
作者 Li-Hua Shen (Li-Hua Shen)Hong-Ni Wang (Hong-Ni Wang)Pei-Jing Chen (Pei-Jing Chen)Chun-Xia Yu (Chun-Xia Yu)Yao-Dong Liang (Yao-Dong Liang)Cheng-Xiao Zhang (Cheng-Xiao Zhang)
英文摘要
A novel electrochemiluminescence (ECL) luminophor of amoxicillin was studied and found to generate ECL following the oxidation or reduction of amoxicillin. The amoxicillin oxidation state was also found to eliminate the reduction state, generating ECL. When solutions of amoxicillin were scanned between þ1.5 V and 1.0 V with a graphite electrode in the presence of cetyltrimethyl ammonium bromide using KC1 as the supporting electrolyte, ECL emissions were observed at potentials of 0.7 V and þ0.5 V. The ECL intensity at 0.7 V was enhanced by H2O2. Based on these findings, an ECL method for the determination of the amoxicillin concentration is proposed. The ECL intensities were linear with amoxicillin concentrations in the range of 1.8 108 g/mL to 2.5 107 g/mL, and the limit of detection (signal/noise=3) was 5 109 g/mL. The florescence of amoxicillin had the greatest emission intensity in a neutral medium, with the emission wavelength dependent on the excitation wavelength. The experiments on the ECL mechanism for amoxicillin found that the electrochemical oxidation products of dissolved oxygen and active oxygen species contributed to the ECL process. The data also suggest that the hydroxyl group of amoxicillin contributed to its ECL emission.
起訖頁 199-205
關鍵詞 amoxicillinelectrochemiluminescence
刊名 JOURNAL OF FOOD AND DRUG ANALYSIS  
期數 201601 (24:1期)
出版單位 衛生福利部食品藥物管理署
該期刊-上一篇 Determination of the levels of two types of neurotransmitter and the anti-migraine effects of different dose-ratios of Ligusticum chuanxiong and Gastrodia elata
該期刊-下一篇 Chemopreventive effect of myrtenal on bacterial enzyme activity and the development of 1,2-dimethyl hydrazine-induced aberrant crypt foci in Wistar Rats
 

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