High-pressure and high-temperature modulation of one-dimensional infinite chain in SeO2
The structural evolution of lone-pair compounds under high-pressure and high-temperature conditions has been a subject of fundamental interest in revealing modulated polymorphs. As one of the archetypal lone-pair compounds, selenium dioxide (SeO2) has attracted much attention due to the pressure mod...
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Published in | Applied physics letters Vol. 124; no. 14 |
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Main Authors | , , , , , , , , , , |
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01.04.2024
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Abstract | The structural evolution of lone-pair compounds under high-pressure and high-temperature conditions has been a subject of fundamental interest in revealing modulated polymorphs. As one of the archetypal lone-pair compounds, selenium dioxide (SeO2) has attracted much attention due to the pressure modulation of its one-dimensional infinite W-shaped chain arrangement. Here, through swarm intelligence algorithm in conjunction with the first-principles simulation, we propose the existence of an orthorhombic Pnma-SeO2 structure, characterized by V-shaped chains interconnected via vertex-sharing SeO3 pyramids. These V-shaped chains demonstrate reduced compressibility along their chain direction compared to the W-shaped chains. Calculations indicate that Pnma-SeO2 is a semiconductor with a large indirect bandgap of 2.39 eV. Remarkably, we synthesized the predicted Pnma-SeO2 in a laser-heated diamond anvil cell at a pressure of 48.5 or 87 GPa as identified by in situ synchrotron x-ray diffraction data. Our findings lead to a significant extension of the phase diagram and transition path of SeO2 and provide key insights into understanding the pressure modulation in lone-pair compounds. |
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AbstractList | The structural evolution of lone-pair compounds under high-pressure and high-temperature conditions has been a subject of fundamental interest in revealing modulated polymorphs. As one of the archetypal lone-pair compounds, selenium dioxide (SeO2) has attracted much attention due to the pressure modulation of its one-dimensional infinite W-shaped chain arrangement. Here, through swarm intelligence algorithm in conjunction with the first-principles simulation, we propose the existence of an orthorhombic Pnma-SeO2 structure, characterized by V-shaped chains interconnected via vertex-sharing SeO3 pyramids. These V-shaped chains demonstrate reduced compressibility along their chain direction compared to the W-shaped chains. Calculations indicate that Pnma-SeO2 is a semiconductor with a large indirect bandgap of 2.39 eV. Remarkably, we synthesized the predicted Pnma-SeO2 in a laser-heated diamond anvil cell at a pressure of 48.5 or 87 GPa as identified by in situ synchrotron x-ray diffraction data. Our findings lead to a significant extension of the phase diagram and transition path of SeO2 and provide key insights into understanding the pressure modulation in lone-pair compounds. |
Author | Guo, Qing Wang, Hongbo Lu, Wencheng Liu, Guangtao Zhou, Mi Cai, Jinqun Ning, Ping Liu, Siyu Ma, Yanming Wang, Yanchao Ma, Chuanheng |
Author_xml | – sequence: 1 givenname: Wencheng surname: Lu fullname: Lu, Wencheng organization: Key Laboratory of Material Simulation Methods and Software of Ministry of Education, College of Physics, Jilin University – sequence: 2 givenname: Siyu surname: Liu fullname: Liu, Siyu organization: Key Laboratory of Material Simulation Methods and Software of Ministry of Education, College of Physics, Jilin University – sequence: 3 givenname: Jinqun surname: Cai fullname: Cai, Jinqun organization: Key Laboratory of Material Simulation Methods and Software of Ministry of Education, College of Physics, Jilin University – sequence: 4 givenname: Ping surname: Ning fullname: Ning, Ping organization: State Key Laboratory of Superhard Materials, College of Physics, Jilin University – sequence: 5 givenname: Chuanheng surname: Ma fullname: Ma, Chuanheng organization: Key Laboratory of Material Simulation Methods and Software of Ministry of Education, College of Physics, Jilin University – sequence: 6 givenname: Guangtao surname: Liu fullname: Liu, Guangtao organization: Key Laboratory of Material Simulation Methods and Software of Ministry of Education, College of Physics, Jilin University – sequence: 7 givenname: Hongbo surname: Wang fullname: Wang, Hongbo organization: State Key Laboratory of Superhard Materials, College of Physics, Jilin University – sequence: 8 givenname: Qing surname: Guo fullname: Guo, Qing organization: 3International Center of Future Science, Jilin University, Changchun 130012, China – sequence: 9 givenname: Mi surname: Zhou fullname: Zhou, Mi organization: Key Laboratory of Material Simulation Methods and Software of Ministry of Education, College of Physics, Jilin University – sequence: 10 givenname: Yanchao surname: Wang fullname: Wang, Yanchao organization: Key Laboratory of Material Simulation Methods and Software of Ministry of Education, College of Physics, Jilin University – sequence: 11 givenname: Yanming surname: Ma fullname: Ma, Yanming organization: 3International Center of Future Science, Jilin University, Changchun 130012, China |
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Snippet | The structural evolution of lone-pair compounds under high-pressure and high-temperature conditions has been a subject of fundamental interest in revealing... |
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SubjectTerms | Algorithms Compressibility Diamond anvil cells First principles High pressure High temperature Laser beam heating Modulation Phase diagrams Pyramids Selenium dioxide Swarm intelligence Synchrotron radiation |
Title | High-pressure and high-temperature modulation of one-dimensional infinite chain in SeO2 |
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