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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Influence of carbon concentration on chemical behavior of energetic deuterium implanted into carbon-contained boron film
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Influence of carbon concentration on chemical behavior of energetic deuterium implanted into carbon-contained boron film

机译:碳浓度对含碳硼薄膜中注入高能氘的化学行为的影响

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Influence of carbon concentration on chemical behavior of energetic deuterium implanted into carbon-contained boron film was investigated by XPS and TDS. Total deuterium retention and the retention of deuterium trapped by boron were decreased as the carbon concentration was increased, although that by carbon was increased. 60% of the total deuterium retention was trapped by carbon for the sample at the carbon concentration of around 30%, suggesting that deuterium had more affinity with carbon than boron. Above the carbon concentration of 20%, the chemical states of carbon were clearly changed, which led to the deuterium trapping by carbon, indicating the chemical structure change would make a large influence on D trapping. It can be said that deuterium trapped by carbon should be taken into consideration for the evaluation of tritium inventory in the carbon-contained boron film with the carbon concentration above 20%.
机译:用XPS和TDS研究了碳浓度对高能氘注入含碳硼薄膜中化学行为的影响。尽管碳的含量增加,总氘的保留量和硼捕获的氘的保留量随碳浓度的增加而降低。在大约30%的碳浓度下,样品中的碳捕获了60%的氘,表明氘比硼对碳的亲和力更高。碳浓度超过20%时,碳的化学状态发生了明显变化,导致氘被碳捕获,表明化学结构的变化会对D的捕获产生很大的影响。可以说,对于碳浓度大于20%的含碳硼膜中的inventory存量的评估,应考虑被碳捕获的氘。

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