FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Quantum chemical analysis of hydrogen isotopes in lithium oxide

Hisashi Tanigawa, Satoru Tanaka2002年Fusion Engineering and DesignIF 1.7出版社

AbstractIn order to clarify the existing states and the diffusion process of hydrogen isotopes in Li2O, the quantum chemical analysis has been conducted especially emphasising interaction with charged defects such as F-centers. Using two calculation codes based on different theories, treatment of charged defects was discussed. From the comparison with FT-IR or diffusion model studies, the interaction of hydrogen isotopes with defects was explained taking electron transfer between them into consideration.

日本語訳

Li2O中の水素同位体の存在状態と拡散過程を解明するために、Fセンターなどの荷電欠陥との相互作用に特に着目した量子化学解析を行った。異なる理論に基づく2つの計算コードを用いて、荷電欠陥の取り扱いについて検討した。FT-IRや拡散モデルとの比較から、水素同位体と欠陥との相互作用は、それらの間の電子移動を考慮することによって説明された。

wiki

LithiumHydrogen isotopes
この論文にはまだAI要約がありません。

関連論文

FT-IR study on interaction of hydrogen isotopes with defects in lithium oxide

2000Fusion Engineering and Design

Investigation of hydrogen isotopes interaction processes with lithium under neutron irradiation

2016Fusion Engineering and Design

Thermal desorption behavior of hydrogen isotopes interacting with radiation defects in Li2O

2005Fusion Engineering and Design

Investigation of hydrogen isotopes interaction with lithium CPS under reactor irradiation

2017Fusion Engineering and Design

Study on the retention behavior of hydrogen isotopes and the change of chemical states of boron film exposed to hydrogen plasma in LHD

2012Fusion Engineering and Design

A volume-averaged model of nitrogen–hydrogen plasma chemistry to investigate ammonia production in a plasma-surface-interaction device

2018Plasma Physics and Controlled Fusion

A study on hydrogen absorption and dissolution in liquid lithium

2019Nuclear Fusion

Quantum Mechanical Theory of Hydrogen Diffusion

1976PHYSICAL REVIEW LETTERS

First-principles-based multiple-isotope particle transport modelling at JET

2020Nuclear Fusion

Analysis of diffusion and dissolution of two-component hydrogen (H + D) in lead lithium

2012Fusion Engineering and Design