October 2024

Journal

Structure and magnetic properties of Ba9⁢V3⁢Te15 with ferromagnetic spin chains

By:
Zhang, Jun; Zhang, Xinyu; Xia, Yuanhua; Zhao, Jianfa; Duan, Lei; Wang, Guodong; Min, Baosen; Cao, Huibo ; Dela Cruz, Clarina R; Zhao, Kan; Sun, Hongyi; Zhu, Jinlong; Zhang, Jianfeng; Xiang, Tao; Wang, Xiancheng; Jin, Changqing
Journal Name:
Physical Review B
Page Number:
174423
Volume:
108
Issue Number:
17
Publication Date:
October 25, 2024
View DOI Listing:
https://doi.org/10.1103/PhysRevB.108.174423

Abstract

Here we report a ferromagnetic compound Ba9⁢V3⁢Te15 with quasi-one-dimensional (1D) spin chains. It was synthesized at high-temperature and high-pressure conditions and systematically investigated via structural, transport, magnetic and heat capacity measurements. Ba9⁢V3⁢Te15 mainly consists of trimerized face-sharing V⁢Te6 octahedral chains running along the 𝑐 axis, which are separated by a distance of 10.184⁢(8)⁢Å, thus demonstrating a strong 1D structural character. Ba9⁢V3⁢Te15 is a semiconductor with a band gap ∼128meV and undergoes a ferromagnetic transition with 𝑇C∼3.6K. Far above 𝑇C, the short-range spin orders due to the intrachain spin coupling have developed, which leads to a negative magnetoresistance effect, the deviation of magnetic susceptibility from the Curie-Weiss law and 𝑇1/2 dependence of magnetic heat capacity. Our results reveal that Ba9⁢V3⁢Te15 provides a good opportunity to study the intrinsic properties of a system with quasi-1D ferromagnetic spin chains.