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Negative thermal expansion in NbF3 and NbOF2:A comparative theoretical study

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【作者】 张明月王春艳张一诺高其龙贾瑜

【Author】 Mingyue Zhang;Chunyan Wang;Yinuo Zhang;Qilong Gao;Yu Jia;International Laboratory for Quantum Functional Materials of Henan, and School of Physics and Microelectronics,Zhengzhou University;Key Laboratory of Special Functional Materials of Ministry of Education, and School of Materials Science and Engineering,Henan University;

【通讯作者】 高其龙;贾瑜;

【机构】 International Laboratory for Quantum Functional Materials of Henan, and School of Physics and Microelectronics,Zhengzhou UniversityKey Laboratory of Special Functional Materials of Ministry of Education, and School of Materials Science and Engineering,Henan University

【摘要】 Thermal expansion control is always an obstructive factor and challenging in high precision engineering field. Here,the negative thermal expansion of Nb F3 and Nb OF2 was predicted by first-principles calculation with density functional theory and the quasi-harmonic approximation(QHA). We studied the total charge density, thermal vibration, and lattice dynamic to investigate the thermal expansion mechanism. We found that the presence of O induced the relatively strong covalent bond in Nb OF2, thus weakening the transverse vibration of F and O in Nb OF2, compared with the case of Nb F3.In this study, we proposed a way to tailor negative thermal expansion of metal fluorides by introducing the oxygen atoms.The present work not only predicts two NTE compounds, but also provides an insight on thermal expansion control by designing chemical bond type.

【Abstract】 Thermal expansion control is always an obstructive factor and challenging in high precision engineering field. Here,the negative thermal expansion of Nb F3 and Nb OF2 was predicted by first-principles calculation with density functional theory and the quasi-harmonic approximation(QHA). We studied the total charge density, thermal vibration, and lattice dynamic to investigate the thermal expansion mechanism. We found that the presence of O induced the relatively strong covalent bond in Nb OF2, thus weakening the transverse vibration of F and O in Nb OF2, compared with the case of Nb F3.In this study, we proposed a way to tailor negative thermal expansion of metal fluorides by introducing the oxygen atoms.The present work not only predicts two NTE compounds, but also provides an insight on thermal expansion control by designing chemical bond type.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 11774078 and 21905252);China Postdoctoral Science Foundation (Grant No. 2019M652558);Innovation Scientists and Technicians Troop Construction Projects of Henan Province,China (Grant No. 10094100510025)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2021年05期
  • 【分类号】TQ135.12
  • 【下载频次】21
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