High‐Throughput Screening Assisted Discovery of a Stable Layered Anti‐Ferromagnetic Semiconductor: CdFeP<sub>2</sub>Se<sub>6</sub>
Article 2023 en
Authors
MK
Manish Kothakonda
YZ
Yanglin Zhu
YG
Yingdong Guan
Abstract
1 min read
Abstract Recent advances in 2D magnetism have heightened interest in layered magnetic materials due to their potential for spintronics. In particular, layered semiconducting antiferromagnets exhibit intriguing low‐dimensional semiconducting behavior with both charge and spin as carrier controls. However, synthesis of these compounds is challenging and remains rare. Here, first‐principles based high‐throughput search is conducted to screen potentially stable mixed metal phosphorous trichalcogenides (MM ′ P 2 X 6 , where M and M ′ are transition metals and X is a chalcogenide) that have a wide range of tunable bandgaps and interesting magnetic properties. Among the potential candidates, a stable semiconducting layered magnetic material, CdFeP 2 Se 6 , that exhibits a short‐range antiferromagnetic order at T N = 21 K with an indirect bandgap of 2.23 eV is successfully synthesized . This work suggests that high‐throughput screening assisted synthesis can be an effective method for layered magnetic materials discovery.
Xu Xiao, Patrick Urbankowski, Kanit Hantanasirisakul, Yao Yang, Stephen S. Sasaki, Long Yang, Chi Chen, Hao Wang, Ling Miao, Sarah H. Tolbert, Simon J. L. Billinge, Hèctor D. Abruña, Steven J. May, Yury Gogotsi
Kanit Hantanasirisakul, Babak Anasori, Slavomír Nemšák, James L. Hart, Jiabin Wu, Yizhou Yang, Rajesh V. Chopdekar, Padraic Shafer, Andrew F. May, Eun Ju Moon, Jun Zhou, Qinghua Zhang, Mitra L. Taheri, Steven J. May, Yury Gogotsi
Discussion(0)
No comments yet. Be the first to comment.