Design and synthesis of three-dimensional hybrid Ruddlesden-Popper nickelate single crystals

Fuente: arXiv
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Main Authors: Li, Feiyu, Guo, Ning, Zheng, Qiang, Shen, Yang, Wang, Shilei, Cui, Qihui, Liu, Chao, Wang, Shanpeng, Tao, Xutang, Zhang, Guang-Ming, Zhang, Junjie
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Published: 2023
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author Li, Feiyu
Guo, Ning
Zheng, Qiang
Shen, Yang
Wang, Shilei
Cui, Qihui
Liu, Chao
Wang, Shanpeng
Tao, Xutang
Zhang, Guang-Ming
Zhang, Junjie
author_facet Li, Feiyu
Guo, Ning
Zheng, Qiang
Shen, Yang
Wang, Shilei
Cui, Qihui
Liu, Chao
Wang, Shanpeng
Tao, Xutang
Zhang, Guang-Ming
Zhang, Junjie
contents Advancement of technologies relies on discovery of new materials with emerging physical properties that are determined by their crystal structures. Ruddlesden-Popper (R-P) phases with formula of $A_{n+1}$$B_n$$X_{3n+1}$ (n=1,2,3...) are among one of the most widely studied class of materials due to their electrical, optical, magnetic, thermal properties and their combined multifunctional properties(Ref.1-6). In R-P phases, intergrowth is well-known in the short range(Ref.7-9); however, no existing compounds have been reported to have different n mixed in bulk single crystals. Here we design a hybrid R-P nickelate $La_2NiO_4$$La_3Ni_2O_7$ by alternatively stacking bilayers, which is the active structural motif in the newly discovery high-$T_c$ superconductor $La_3Ni_2O_7$ and single layers of the antiferromagnetic insulator $La_2NiO_4$. We report the successful synthesis of $La_2NiO_4$$La_3Ni_2O_7$ single crystals, and X-ray diffraction and real-space imaging vis STEM show that the crystal structure consists of single layers and bilayers of $NiO_6$ octahedral stacking alternatively perpendicular to the ab plane, characterized by the orthorhombic Immm (No.71) space group. Resistivity measurements indicate a peculiar insulator-to-metal transition around 140 K on cooling. Correlated density functional theory calculations corroborate this finding, and reveal that the single layer becomes paramagnetic metallic due to charge transfer via LaO layers. The discovery of $La_2NiO_4$$La_3Ni_2O_7$ opens a door to access a completely new family of 3D hybrid R-P phases with the formula of $A_{n+1}$$B_n$$X_{3n+1}$$A'_{m+1}$$B'_m$$X'_{3m+1}$ which potentially host a plethora of emerging physical properties for various applications.
format Preprint
id arxiv_https___arxiv_org_abs_2312_08116
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Design and synthesis of three-dimensional hybrid Ruddlesden-Popper nickelate single crystals
Li, Feiyu
Guo, Ning
Zheng, Qiang
Shen, Yang
Wang, Shilei
Cui, Qihui
Liu, Chao
Wang, Shanpeng
Tao, Xutang
Zhang, Guang-Ming
Zhang, Junjie
Materials Science
Strongly Correlated Electrons
Superconductivity
Advancement of technologies relies on discovery of new materials with emerging physical properties that are determined by their crystal structures. Ruddlesden-Popper (R-P) phases with formula of $A_{n+1}$$B_n$$X_{3n+1}$ (n=1,2,3...) are among one of the most widely studied class of materials due to their electrical, optical, magnetic, thermal properties and their combined multifunctional properties(Ref.1-6). In R-P phases, intergrowth is well-known in the short range(Ref.7-9); however, no existing compounds have been reported to have different n mixed in bulk single crystals. Here we design a hybrid R-P nickelate $La_2NiO_4$$La_3Ni_2O_7$ by alternatively stacking bilayers, which is the active structural motif in the newly discovery high-$T_c$ superconductor $La_3Ni_2O_7$ and single layers of the antiferromagnetic insulator $La_2NiO_4$. We report the successful synthesis of $La_2NiO_4$$La_3Ni_2O_7$ single crystals, and X-ray diffraction and real-space imaging vis STEM show that the crystal structure consists of single layers and bilayers of $NiO_6$ octahedral stacking alternatively perpendicular to the ab plane, characterized by the orthorhombic Immm (No.71) space group. Resistivity measurements indicate a peculiar insulator-to-metal transition around 140 K on cooling. Correlated density functional theory calculations corroborate this finding, and reveal that the single layer becomes paramagnetic metallic due to charge transfer via LaO layers. The discovery of $La_2NiO_4$$La_3Ni_2O_7$ opens a door to access a completely new family of 3D hybrid R-P phases with the formula of $A_{n+1}$$B_n$$X_{3n+1}$$A'_{m+1}$$B'_m$$X'_{3m+1}$ which potentially host a plethora of emerging physical properties for various applications.
title Design and synthesis of three-dimensional hybrid Ruddlesden-Popper nickelate single crystals
topic Materials Science
Strongly Correlated Electrons
Superconductivity
url https://arxiv.org/abs/2312.08116