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The present study is aimed to investigate the degree of crystallinity of poly(3-hydroxybutyrate) P(3HB) grafted with poly(2-aminoethyl methacrylate hydrochloride) (PAEMA) chains using WAXS, micro Raman, and FTIR spectroscopy. The samples were obtained by radiation induced graft polymerization of the monomer in the substrate using different solvents for comparison. The results of crystallinity are consistent with those obtained of lower crystallinity in grafting copolymer relative to the substrate P(3HB). The low crystallinity is directly related to the increase of the degree of grafting, meaning that although the P(3HB) amorphous region is grafted, the crystalline zone is also affected in some extent by the grafting process and the environment of the new molecule. Three different methods were surveyed to determine the variation of crystallinity degree with the grafting degree. It is shown that all methods provide linear relationships between these variables, but WAXS method was found more acceptable than the others (FTIR and Raman). A detailed characterization of the vibrational bands characteristic of amorphous and helical crystalline structure of the grafting copolymers are also highlighted.  相似文献   
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A novel method is developed for the direct determination of naphazoline hydrochloride(NAP) and pyridoxine hydrochloride(VB6) in commercial eye drops. By using excitation–emission matrix(EEM)fluorescence coupled with second-order calibration method based on the alternating trilinear decomposition(ATLD) algorithm, the proposed approach can achieve quantitative analysis successfully even in the presence of unknown and uncalibrated interferences. The method shows good linearity for NAP and VB6 with correlation coefficients greater than 0.99. The results were in good agreement with the labeled contents. To further confirm the feasibility and reliability of the proposed method, the same batch samples were analyzed by multiple reaction monitoring(MRM) based on LC–MS/MS method.T-test demonstrated that there are no significant differences between the prediction results of the two methods. The satisfactory results obtained in this work indicate that the use of the second-order calibration method coupled with the EEM is a promising tool for industrial quality control and pharmaceutical analysis due to its advantages of high sensitivity, low-cost and simple implementation.  相似文献   
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建立了同时测定禽肉组织中盐酸金刚烷胺、盐酸金刚乙胺、地塞米松、替米考星及喹乙醇代谢物残留量的液相色谱-串联质谱分析方法。样品用2 mol/L氢氧化钠溶液水解,盐酸调节p H值后,以乙腈作为提取溶剂,经C18固相萃取柱净化。各待测物分别经0.1%甲酸甲醇溶液和氨化甲醇(0.1%氨水)洗脱,Phenomenex Kinetex C18(100 mm×4.6 mm,2.6μm)色谱柱进行分离,采用0.1%甲酸(含5 mmol/L乙酸铵)-甲醇作流动相,梯度洗脱,串联质谱法对5种药物含量进行测定。结果表明,5种药物在2~100μg/L范围内线性关系良好,相关系数为0.996 2~0.999 8。在加标浓度为5~50μg/kg的禽肉组织中,这5种药物的加标回收率为73.7%~92.3%,相对标准偏差(n=5)为3.9%~16.6%,检出限为0.2~3.0μg/kg,定量下限为0.7~10μg/kg。方法快速、简便、经济实用,符合法规要求,可满足日常检测的需要。  相似文献   
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建立了一种毛细管电色谱-电喷雾-飞行时间/质谱(CEC-ESI-TOF/MS)联用分离分析盐酸异丙肾上腺素和盐酸氯丙那林混合手性药物的方法。利用实验室自制有机-无机杂化开管柱作为色谱分离柱,考察了缓冲溶液的浓度、p H值、运行电压、分离温度、鞘液的种类、鞘液添加剂、鞘液的流速等分离检测条件对分离度和电离强度的影响。结果表明,在优化的分离检测条件下,两种混合手性药物的4个组分在18.5min内实现基线分离。  相似文献   
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在碱性介质中,盐酸异丙嗪对luminol-KMnO4发光体系有显著的增强作用.基于此增强作用,建立了一种FI-CL检测盐酸异丙嗪的新方法.在最优化的实验条件下,盐酸异丙嗪的ΔICL强度与其浓度在7.0×10-9~9.0×10-7 mol/L浓度范围内有较好的线性关系.线性方程为ΔICL=35.19+1.19×10-10 c,相关系数r=0.998 4,检出限为4.9×10-9 mol/L.对7.0×10-9 mol/L的盐酸氯丙嗪标准溶液进行11次平行测定,其RSD为2.4%.盐酸异丙嗪加标回收率在89.1%~96.1%之间.  相似文献   
108.
利用荧光猝灭法和同步荧光法进行了盐酸吡格列酮(PGH)与牛血清白蛋白(BSA)之间反应机理的比较研究.结果表明:两种方法在研究PGH-BSA体系的猝灭类型、结合常数、结合位置、作用力类型、协同性及能量转移距离等方面,得到了相同的结果,表明同步荧光光谱法可以用于药物与蛋白反应机理的研究.  相似文献   
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A sensitive and selective liquid chromatography tandem mass spectrometry method for determination of azasetron hydrochloride in rabbit plasma was developed. After addition of doxapram hydrochloride as internal standard (IS), protein precipitation by 10% trichloroacetic acid was used as sample preparation. Chromatographic separation was achieved on a Zorbax SB-C(18) (2.1 × 50 mm, 3.5 μm) column with acetonitrile-water as mobile phase with gradient elution. An electrospray ionization source was applied and operated in positive ion mode; multiple reaction monitoring mode was used to quantification using target fragment ions m/z 349.9 → 223.5 for azasetron hydrochloride and m/z 378.9 → 291.8 for the IS. Calibration plots were linear over the range of 6-1000 ng/mL for azasetron hydrochloride in plasma. The lower limit of quantitation for azasetron hydrochloride was 6 ng/mL. The mean recovery of azasetron hydrochloride from plasma was in the range 85.6-92.7%. The RSDs of intra-day and inter-day precision were both less than 12%. This method is simple and sensitive enough to be used in pharmacokinetic research for determination of azasetron hydrochloride in rabbit plasma.  相似文献   
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