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用气相法测定丙酸盐酸盐中N-甲基正戊胺的含量
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作者 刘昌盛 马平 《求医问药(下半月刊)》 2011年第11期338-338,共1页
目的建立丙酸盐酸盐中可能含有的杂质—N-甲基正戊胺的气相检测方法。方法采用RTX-5毛细管色谱柱,测定N-甲基正戊胺的含量。结果:线性范围为0.0380~0.4755mg/ml;方法的检出限为2.5575μg/ml。平均回收率为100.63%。结论:N-甲基正戊胺... 目的建立丙酸盐酸盐中可能含有的杂质—N-甲基正戊胺的气相检测方法。方法采用RTX-5毛细管色谱柱,测定N-甲基正戊胺的含量。结果:线性范围为0.0380~0.4755mg/ml;方法的检出限为2.5575μg/ml。平均回收率为100.63%。结论:N-甲基正戊胺在气相色谱中响应值良好,采用顶空法测定避免了样品热分解引起的杂质干扰,经过方法学的验证可以作为检测N-甲基正戊胺含量的简便有效的方法。 展开更多
关键词 气相色谱法 丙酸盐酸盐 n-甲基正戊胺
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When does a diblock copolymer probe the interfacial rheological effect?
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作者 Jingfa Yang Jiang Zhao 《Science China Chemistry》 SCIE EI CAS CSCD 2016年第10期1330-1334,共5页
Lateral diffusion of diblock copolymer residing on the interfaces between two immiscible liquids is investigated at single molecular level. Fluorescence correlation spectroscopy was used to study the diffusion of fluo... Lateral diffusion of diblock copolymer residing on the interfaces between two immiscible liquids is investigated at single molecular level. Fluorescence correlation spectroscopy was used to study the diffusion of fluorescence-labeled diblock copolymer,polystyrene-b-polyisoprene, at the interface formed between two immiscible liquids. The interfaces are formed between N,N-dimethylformamide(DMF) and a few immiscible liquids, n-alkane and polyisoprene. Interfacial diffusion coefficient of the diblock copolymer probe is found to decrease monotonously with the increase of the molecular length of the interface constituting liquids. The decrease of diffusion coefficient follows the prediction by Einstein relation using the viscosity of the constituting liquids as the variables only for interfaces between DMF and very small n-alkanes. For interfaces formed between DMF and bigger alkanes and especially between DMF and polyisoprene, the diffusion coefficient is much higher than the calculated value,indicating that the probe molecule starts to probe the much less viscous interfacial region because the interfacial width gets larger,whose thickness is comparable to the molecule size of the liquids. 展开更多
关键词 INTERFACES diffusion immiscible liquids single molecule fluorescence
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