Synergistic doping and stabilization of magnetically tunable LnTi$_3$(Sb,Sn)$_4$ (Ln:Ce--Gd) kagome metals

Fuente: arXiv
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Main Authors: Ortiz, Brenden R., Chapai, Ramakanta, Samolyuk, German, Sprague, Milo, Kumay, Arun K., Miao, Hu, Gornicka, Karolina, Wang, Xiaoping, Zhang, Qiang, Neupane, Madhab, Parker, David, Yan, Jiaqiang
Format: Preprint
Published: 2026
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author Ortiz, Brenden R.
Chapai, Ramakanta
Samolyuk, German
Sprague, Milo
Kumay, Arun K.
Miao, Hu
Gornicka, Karolina
Wang, Xiaoping
Zhang, Qiang
Neupane, Madhab
Parker, David
Yan, Jiaqiang
author_facet Ortiz, Brenden R.
Chapai, Ramakanta
Samolyuk, German
Sprague, Milo
Kumay, Arun K.
Miao, Hu
Gornicka, Karolina
Wang, Xiaoping
Zhang, Qiang
Neupane, Madhab
Parker, David
Yan, Jiaqiang
contents Here we present our synthesis and characterization of the LnTi$_3$(Sb,Sn)$_4$ (Ln: Ce, Pr, Nd, Sm, Gd) family of cleavable kagome metals. While these materials are isostructural to the LnTi$_3$Bi$_4$ family, they only form as (Sb,Sn) solid-solutions with no corresponding LnTi$_3$Sb$_4$ or LnTi$_3$Sn$_4$ phases. We use a combination of first-principles density functional theory (DFT) and Crystal Orbital Hamilton Population (COHP) calculations to show that (Sb,Sn) alloying has a stabilizing effect on the structure by adjusting the Fermi level, filling bonding states, depopulating antibonding states, and adjusting the density-of-states (DOS) towards local minima, an effect we call ``synergistic doping.'' The tunable Fermi level also has a profound effect on the magnetism, which we demonstrate through a detailed characterization of the SmTi$_3$(Sb,Sn)$_4$ series. The series hosts multiple magnetic ground states resulting from competing magnetic interactions that are tunable by the (Sb,Sn) ratio. While the focus of this work is on SmTi$_3$(Sb,Sn)$_4$, we briefly comment on the (Sb,Sn) solubility range and the conferred magnetic tunability in the other rare-earths compounds (Ln: Ce, Pr, Nd, Gd) as well. Our work demonstrates how the (Sb,Sn) synergistic pair can be used to stabilize the LnTi$_3$(Sb,Sn)$_4$ structure while simultaneously providing a means to tune the magnetism, ultimately providing a potential route to develop new intermetallics with chemical, magnetic, and electronic tunability.
format Preprint
id arxiv_https___arxiv_org_abs_2603_14571
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Synergistic doping and stabilization of magnetically tunable LnTi$_3$(Sb,Sn)$_4$ (Ln:Ce--Gd) kagome metals
Ortiz, Brenden R.
Chapai, Ramakanta
Samolyuk, German
Sprague, Milo
Kumay, Arun K.
Miao, Hu
Gornicka, Karolina
Wang, Xiaoping
Zhang, Qiang
Neupane, Madhab
Parker, David
Yan, Jiaqiang
Strongly Correlated Electrons
Materials Science
Here we present our synthesis and characterization of the LnTi$_3$(Sb,Sn)$_4$ (Ln: Ce, Pr, Nd, Sm, Gd) family of cleavable kagome metals. While these materials are isostructural to the LnTi$_3$Bi$_4$ family, they only form as (Sb,Sn) solid-solutions with no corresponding LnTi$_3$Sb$_4$ or LnTi$_3$Sn$_4$ phases. We use a combination of first-principles density functional theory (DFT) and Crystal Orbital Hamilton Population (COHP) calculations to show that (Sb,Sn) alloying has a stabilizing effect on the structure by adjusting the Fermi level, filling bonding states, depopulating antibonding states, and adjusting the density-of-states (DOS) towards local minima, an effect we call ``synergistic doping.'' The tunable Fermi level also has a profound effect on the magnetism, which we demonstrate through a detailed characterization of the SmTi$_3$(Sb,Sn)$_4$ series. The series hosts multiple magnetic ground states resulting from competing magnetic interactions that are tunable by the (Sb,Sn) ratio. While the focus of this work is on SmTi$_3$(Sb,Sn)$_4$, we briefly comment on the (Sb,Sn) solubility range and the conferred magnetic tunability in the other rare-earths compounds (Ln: Ce, Pr, Nd, Gd) as well. Our work demonstrates how the (Sb,Sn) synergistic pair can be used to stabilize the LnTi$_3$(Sb,Sn)$_4$ structure while simultaneously providing a means to tune the magnetism, ultimately providing a potential route to develop new intermetallics with chemical, magnetic, and electronic tunability.
title Synergistic doping and stabilization of magnetically tunable LnTi$_3$(Sb,Sn)$_4$ (Ln:Ce--Gd) kagome metals
topic Strongly Correlated Electrons
Materials Science
url https://arxiv.org/abs/2603.14571