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Quantitative Analysis of Free Fatty Acids in Human Serum Using Biexciton Auger Recombination in Cadmium Telluride Nanoparticles Loaded on Zeolite

机译:使用Biexciton俄歇复合法对负载在沸石上的碲化镉纳米颗粒进行定量分析,测定人血清中的游离脂肪酸

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Nanometer-sized semiconductor particles (CdTe) were used as an inorganic matrix for the laser desorption/ionization mass spectrometry of fatty acids. The excitation power dependence of the peak intensity of stearic acid (Ste), [Ste - H]~-, was observed, and it was proportional to the square of the excitation power. The peak intensity of [Ste - H]~- decreased by addition of a hole scavenger (KSCN). It was understood that the ionization of fatty acids were due to the biexciton Auger recombination and electron ejection from CdTe. CdTe were then loaded on zeolite surface. The peak intensity enhancement of the deprotonated ion of fatty acid were observed. This phenomenon was explained by measuring the carrier lifetime for Auger recombination in CdTe. In addition, reproducibility of fatty acid ions was highly improved reflecting homogeneous distribution of CdTe on zeolite surface. CdTe/HM20 was successfully applied to the quantitative analysis of Ste in human serum by isotope dilution using ~(13)C_(18)-Ste. The concentration of Ste in human serum samples was estimated to be 76.62 mg/kg with the standard deviation (SD) of 2.37 mg/kg.
机译:纳米尺寸的半导体颗粒(CdTe)被用作无机基质,用于脂肪酸的激光解吸/电离质谱。观察到硬脂酸峰值强度[Ste-H]〜-的激发功率依赖性,它与激发功率的平方成正比。通过添加空穴清除剂(KSCN),[Ste-H]〜-的峰强度降低。可以理解,脂肪酸的离子化是由于双激子俄歇重组和CdTe的电子喷射。然后将CdTe负载在沸石表面上。观察到脂肪酸去质子化离子的峰强度增强。通过测量CdTe中俄歇复合的载流子寿命来解释这种现象。此外,脂肪酸离子的重现性大大提高,反映了CdTe在沸石表面的均匀分布。 CdTe / HM20通过〜(13)C_(18)-Ste同位素稀释法成功应用于人血清中Ste的定量分析。人血清样品中Ste的浓度估计为76.62 mg / kg,标准偏差(SD)为2.37 mg / kg。

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