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引用本文:李已才,梁帮宏,陈云明,张舸,杜文鹤.????????????????????????е?????о?[J].质谱学报,2014,35(2):132-137.
作者姓名:李已才  梁帮宏  陈云明  张舸  杜文鹤
作者单位:?й???????о?????????? ???610005
摘    要:????о??????????????U+?????????????????CNTs??????????????????????????????????????????????????235U/238U????????????????о?????????????λ??????????????????????ī??????????????????????????????????????????????????????????????????U+?????????????????????????????????CNTs-3??Ч?????????????U+???????3?????????CNTs-3?????????????????25 ng???235U/238U????????С??0.2%??n=18?????????5 ng???235U/238U?????????0.5%??n=18????

关 键 词:??????????TIMS??  ????????  ???λ??  ??????  

Application of Carbon Nanotubes in the Measurement of Uranium by TIMS
LI Yi-cai,LIANG Bang-hong,CHEN Yun-ming,ZHANG Ge,DU Wen-he.Application of Carbon Nanotubes in the Measurement of Uranium by TIMS[J].Journal of Chinese Mass Spectrometry Society,2014,35(2):132-137.
Authors:LI Yi-cai  LIANG Bang-hong  CHEN Yun-ming  ZHANG Ge  DU Wen-he
Affiliation:Nuclear Power Institute of China, Chengdu 610005, China
Abstract:Carbon nanotubes (CNTs) were used as the ion emission promoter for increasing the ionization yield of uranium for the measurement of uranium isotopes by thermal ionization mass spectrometry (TIMS). The emission effect of the carbon nanotubes was studied by researching the change of ion intensity, signal stability and measurement precision. A comparative study of the emission performances of graphite, sucrose and three kinds of carbon nanotubes with different diameters was carried out. The results suggest that carbon nanotubes loaded with the uranium sample can significantly improve U+ yield, signal stability and measurement precision. The ion emission capacity of CNTs-3 is the best among all the carbon sources investigated in this work. The ion yield of U+ is increased more than three times when CNTs-3 as ion emission promoter. Samples with 25 ng and 5 ng uranium are measured using CNTs-3 as ion emission promoter. The results show that the relative standard deviations (RSD) of 235U/238U is about 0.2% and 0.5% (n=18), respectively.
Keywords:thermal ionization mass spectrometry(TIMS)  ion emission promoter  uranium isotope  carbon nanotube
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