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Formation of Lightweight Ternary Polyhydrides and Their Hydrogen Storage Mechanism

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dc.contributor.author Prayoonsak Pluengphon
dc.contributor.author Prutthipong Tsuppayakorn-aek
dc.contributor.author Burapat Inceesungvorn
dc.contributor.author Rajeev Ahuja
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 Chiang Mai Univesity. Department of Chemistry en
dc.contributor.other Uppsala University. Department of Physics and Astronomy en
dc.contributor.other Chulalongkorn University. Faculty of Science en
dc.date.accessioned 2024-09-13T12:57:52Z
dc.date.available 2024-09-13T12:57:52Z
dc.date.issued 2021
dc.identifier.citation The Journal of Physical Chemistry C 125, 3, 2021 en
dc.identifier.uri https://has.hcu.ac.th/jspui/handle/123456789/2801
dc.description สามารถเข้าถึงบทความฉบับเต็ม (Full text) ได้ที่: https://pubs.acs.org/doi/10.1021/acs.jpcc.0c09744 en
dc.description.abstract We have studied Na-Li-H compositions by mixing cations of Na and Li under high pressure using ab initio random structure searching and cluster expansion techniques. We have found that high pressure induces the structural stability of Na3LiH12, Na2Li2H12, and NaLi3H12 compounds. Our phonon calculations confirm the dynamical stability of these compounds, whereas our elastic constant calculations confirm their mechanical stability. Convex hull at 25 GPa indicates the minimum of relative enthalpy in Na2Li2H12, which is the new discovery at lower pressure than other alkali-polyhydride substances. The thermodynamic stability with respect to temperature is analyzed using quasi-harmonic oscillation approximation. Furthermore, NaLiH6 exhibits a high gravimetric hydrogen capacity, which makes this material a potential hydrogen storage candidate. We have also reported the formation enthalpy of hydrogen vacancies as well as the hydrogen diffusion in this lightweight ternary polyhydride system for its practical use in energy storage application. en
dc.language.iso en_US en
dc.subject Hydrogen en
dc.subject ไฮโดรเจน en
dc.subject Phonons en
dc.subject โฟนอน en
dc.subject Stability en
dc.subject เสถียรภาพ en
dc.subject Defects in solids en
dc.subject Polyhydrides en
dc.subject โพลีไฮไดร์ด en
dc.title Formation of Lightweight Ternary Polyhydrides and Their Hydrogen Storage Mechanism en
dc.type Article en


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