A computational study on the superionic behaviour of ThO2
文献情報
P. S. Ghosh, A. Arya, G. K. Dey, N. Kuganathan, R. W. Grimes
This study reports the density functional theory (DFT) and classical molecular dynamics (MD) study of the lattice dynamical, mechanical and anionic transport behaviours of ThO2 in the superionic state. DFT calculations of phonon frequencies were performed at different levels of approximation as a function of isotropic dilation (ε) in the lattice parameter. With the expansion of the lattice parameter, there is a softening of B1u and Eu phonon modes at the X symmetry point of the Brillouin zone. As a result of the nonlinear decrease at the X point, the B1u and Eu phonon modes cross each other at ε = 0.03, which is associated with a sharp increase in the narrow peak of the phonon density of states, signifying a higher occupation and hence a higher coupling of these modes at high temperatures. The mode crossing also indicates anionic conductivity in the 〈001〉 direction leading to occupation of interstitial sites. Moreover, MD and nudged elastic band calculated diffusion barriers indicate that 〈001〉 is the easy direction for anion migration in the normal and superionic states. With a further increase in the lattice parameter, the B1u mode continues to soften and becomes imaginary at a strain (ε) of 0.036 corresponding to a temperature of 3430 K. The calculated temperature variation of single crystal elastic constants shows that the fluorite phase of ThO2 remains elastically stable up to the superionic regime, though the B1u phonon mode is imaginary in that state. This leads to anionic disorder at elevated temperatures. Tracking of anion positions in the superionic state as a function of time in MD simulations suggests a hopping model in which the oxygen ions migrate from one tetrahedral site to another via octahedral interstitial sites.
関連文献
Hierarchical core/shell structure of MnO2@polyaniline composites grown on carbon fiber paper for application in pseudocapacitors
MinHo Yang, Seok Bok Hong, Bong Gill Choi
DOI: 10.1039/C5CP04761G
Ionogel based on biopolymer–silica interpenetrated networks: dynamics of confined ionic liquid with lithium salt
Carole V. Cerclier, Jean-Marc Zanotti, Jean Le Bideau
DOI: 10.1039/C5CP04889C
Ab initio modelling of methane hydrate thermophysical properties
Z. M. Jendi, P. Servio, A. D. Rey
DOI: 10.1039/C5CP06530E
Theoretical demonstration of the potentiality of boron nitride nanotubes to encapsulate anticancer molecule
Mohammed El Khalifi, Eric Duverger, Tijani Gharbi, Hatem Boulahdour, Fabien Picaud
DOI: 10.1039/C5CP05148G
Unique insight into phase separation in polymer solar cells from their electric characteristics
Jian Wang, Fujun Zhang, Qiaoshi An, Qianqian Sun, Jian Zhang
DOI: 10.1039/C5CP05471K
Remarkable enhancement in the Kapitza resistance and electron potential barrier of chemically modified In2O3(ZnO)9 natural superlattice interfaces
DOI: 10.1039/C5CP05076F
Aromatic stabilization of functionalized corannulene cations
Jingbai Li, Andrey Yu. Rogachev
DOI: 10.1039/C5CP07002C
Insights into the reaction mechanism of 3-O-sulfotransferase through QM/MM calculations
Rui P. Sousa, Pedro A. Fernandes, Maria J. Ramos, Natércia F. Brás
DOI: 10.1039/C5CP06224A
こちらもおすすめ
カルボニル基が付いた5-氰基-1-{[(2-メチル-2-プロpanyl)オキシ]カーボンイル}1H-吲哚-2-イリド-2-ボリン酸はどのように保存すればよいですか?
カルボニル基が付いた5-氰基-1-{[(2-メチル-2-プロpanyl)オキシ]カーボンイル}1H-吲哚-2-イリド-2-ボリン酸は、直射日光を避けて室温(15...
tert-ブチル2-クロロメチルピリジン-3-基炭酸エステルの市場動向や研究トレンドはどうですか?
この化合物は合成化学分野において、特にピリジン化合物の合成や改良に用いられます。最近の研究では、ピリジン化合物の新規合成法や特性の改良が注目されています。市場動...
聚二季戊四醇六丙烯酸酯はどの業界で使用されていますか?
聚二季戊四醇六丙烯酸酯は、医薬品、ポリマー、センサー、半導体などの業界で広く使用されています。特にポリマー業界では硬化剤として、医薬分野では医療機器の製造に使用...
1-氯-5-硝基异喹啉の市場動向や研究トレンドはどうですか?
1-氯-5-硝基异喹啉は、薬理学や合成化学の研究分野で注目されています。市場動向としては、その生物学的な活性や合成可能性を評価する研究が増えています。また、代替...
2-チロール-5-メチルスルフェニル-3-trifルオルメチルベンゼンはどのように合成されますか?
2-チロール-5-メチルスルフェニル-3-trifルオルメチルベンゼンは、トリフルオロメチル化反応と硫化反応を経て合成されます。通常、トリフルオロメチル化剤と硫...
p-トールイルマグネシウムブロミドの物理化学的性質は何ですか?
p-トールイルマグネシウムブロミドのCAS番号は4294-57-9です。この化合物は白色の結晶性粉末で、分子量は204.32です。溶剤中で良好に溶解しますが、水...
1-(5-甲基-2-硫化素基)プロパン-1-酮の市場動向や研究トレンドはどうですか?
1-(5-甲基-2-硫化素基)プロパン-1-酮の市場動向は、化学産業全体の需要に影響を受けますが、最近では pharmaceutical 分野での応用が注目され...
十一碳烯酰甘氨酸を取り扱う際の実験室安全事項は何ですか?
十一碳烯酰甘氨酸は吸入や皮膚から吸収されることがあり、取り扱う際には防塵マスクと手袋を使用してください。ドラフトチャンバーを用いて漏洩を処理し、適切なSDS(S...
1H,1H-全氟-3,6-二氧杂葵-1-醇を取り扱う際の実験室安全事項は何ですか?
この化合物は吸入や皮膚吸収による毒性があるため、防塵マスク、ゴーグル、防護手袋を使用する必要があります。ドラフトチャンバーでの操作が必要です。漏洩時には即座に換...
3-(4-(フルオロメチルオキシ)フェニル)-1,2,4-オキサジアゾール-5-カルボハイドライドは安全ですか?
安全性は化合物の使用方法によります。直接的な毒性は報告されていませんが、吸入や皮膚接触には注意が必要です。適切な防護服を着用し、換気を図ることを推奨します。
掲載誌
Physical Chemistry Chemical Physics

Physical Chemistry Chemical Physics (PCCP) is an international journal co-owned by 19 physical chemistry and physics societies from around the world. This journal publishes original, cutting-edge research in physical chemistry, chemical physics and biophysical chemistry. To be suitable for publication in PCCP, articles must include significant innovation and/or insight into physical chemistry; this is the most important criterion that reviewers and Editors will judge against when evaluating submissions. The journal has a broad scope and welcomes contributions spanning experiment, theory, computation and data science. Topical coverage includes spectroscopy, dynamics, kinetics, statistical mechanics, thermodynamics, electrochemistry, catalysis, surface science, quantum mechanics, quantum computing and machine learning. Interdisciplinary research areas such as polymers and soft matter, materials, nanoscience, energy, surfaces/interfaces, and biophysical chemistry are welcomed if they demonstrate significant innovation and/or insight into physical chemistry. Joined experimental/theoretical studies are particularly appreciated when complementary and based on up-to-date approaches.














