The rise of the 2D ferromagnets not only significantly advances fundamental physics and materials science but also provides excellent opportunities for various applications, particularly in spintronics. The 2D ferromagnets reported so far either show a Curie temperature (Tc) below room temperature (RT) or possess a high magnetic damping (α), which strongly limits their applications. Here, utilizing a state-of-the-art interconnected molecular beam epitaxy and magnetron sputtering system, we fabricate high-quality self-intercalated Cr1.8Te2 films and Cr1.8Te2/Pt heterostructures with clean interfaces. We find that the Cr1.8Te2 simultaneously achieves a high Tc (∼340 K) and a record-low α (∼0.02) among all 2D ferromagnets with Tc exceeding RT. These unique features enable the first observation of spin injection from a 2D ferromagnet via spin pumping in Cr1.8Te2/Pt bilayers under ambient conditions. Our findings establish self-intercalated Cr1.8Te2 as an efficient spin current source at RT, highlighting its great potential for practical spintronic applications.
Yu et al. (2026) studied this question.
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