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Pressure-induced structural stability of alkali trihydrides and H2-desorption occurrence: Ab initio study for hydrogen storage improvement

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dc.contributor.author Prayoonsak Pluengphon
dc.contributor.author Prutthipong Tsuppayakorn-aek
dc.contributor.author Burapat Inceesungvorn
dc.contributor.author Thiti Bovornratanaraks
dc.contributor.author ประยูรศักดิ์ เปลื้องผล
dc.contributor.author พฤทธิพงษ์ ทรัพยากรเอก
dc.contributor.author บูรภัทร์ อินทรีย์สังวร
dc.contributor.author ธิติ บวรรัตนารักษ์
dc.contributor.other Huachiew Chalermprakiet University. Faculty of Science and Technology en
dc.contributor.other Chulalongkorn University. Faculty of Science en
dc.contributor.other Faculty of Science, Chiang Mai University en
dc.contributor.other Ministry of Higher Education Science. Research and Innovation. Thailand Center of Excellence in Physics en
dc.date.accessioned 2024-09-23T03:17:17Z
dc.date.available 2024-09-23T03:17:17Z
dc.date.issued 2020
dc.identifier.citation International Journal of Hydrogen Energy 45, 46, (21 September 2020) : 25065-25074 en
dc.identifier.other https://doi.org/10.1016/j.ijhydene.2020.06.267
dc.identifier.uri https://has.hcu.ac.th/jspui/handle/123456789/2874
dc.description สามารถเข้าถึงบทความฉบับเต็ม (Full text) ได้ที่ : https://www.sciencedirect.com/science/article/abs/pii/S0360319920324587 en
dc.description.abstract Alkali trihydrides in the forms of LiH(H2) and NaH(H2) have attracted considerable attention due to its containing of the high-gravimetric hydrogen capacity. Structural and mechanical stabilities, thermodynamic and electronic properties, and H-vacancy occurrences of the alkali trihydrides at high pressures 40–70 GPa are analyzed using ab initio calculation. Phonon stability of LiH(H2) has been predicted at pressure above 40 GPa, while the stability of NaH(H2) at 50 GPa confirms the discovery of previous experiment. Born stability criteria indicates the mechanical stability of LiH(H2) and NaH(H2) in the Cmcm phase. Heat capacity and H-vacancy enthalpy of the alkali trihydrides decrease with an increasing of pressure, indicating the hydrogen storage improvement. The diffusion kinetics and translation paths of H− and H2 vacancies are also investigated. These indicate that the LiH(H2) requires lower energy exchange for hydrogen desorption compared to the NaH(H2). en
dc.language.iso en_US en
dc.subject Hydrogen en
dc.subject ไฮโดรเจน en
dc.subject Hydrides en
dc.subject ไฮไดรด์ en
dc.subject Hydrogen storage en
dc.subject การสะสมไฮโดรเจน en
dc.subject Alkali metals en
dc.subject โลหะอัลคาไล en
dc.title Pressure-induced structural stability of alkali trihydrides and H2-desorption occurrence: Ab initio study for hydrogen storage improvement en
dc.type Article en


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