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Ln<sub>2</sub>(SeO<sub>3</sub>)<sub>2</sub>(SO<sub>4</sub>)(H<sub>2</sub>O)<sub>2</sub> (Ln=Sm, Dy, Yb): A Mixed‐Ligand Pathway to New Lanthanide(III) Multifunctional Materials Featuring Nonlinear Optical and Magnetic Anisotropy Properties

28

Citations

42

References

2022

Year

Abstract

Bottom-up assembly of optically nonlinear and magnetically anisotropic lanthanide materials involving precisely placed spin carriers and optimized metal-ligand coordination offers a potential route to developing electronic architectures for coherent radiation generation and spin-based technologies, but the chemical design historically has been extremely hard to achieve. To address this, we developed a worthwhile avenue for creating new noncentrosymmetric chiral Ln<sup>3+</sup> materials Ln<sub>2</sub> (SeO<sub>3</sub> )<sub>2</sub> (SO<sub>4</sub> )(H<sub>2</sub> O)<sub>2</sub> (Ln=Sm, Dy, Yb) by mixed-ligand design. The materials exhibit phase-matching nonlinear optical responses, elucidating the feasibility of the heteroanionic strategy. Ln<sub>2</sub> (SeO<sub>3</sub> )<sub>2</sub> (SO<sub>4</sub> )(H<sub>2</sub> O)<sub>2</sub> displays paramagnetic property with strong magnetic anisotropy facilitated by large spin-orbit coupling. This study demonstrates a new chemical pathway for creating previously unknown polar chiral magnets with multiple functionalities.

References

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