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Heteroepitaxy of Co-Based Heusler Compound/Muscovite for Flexible Spintronics
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Heteroepitaxy of Co-Based Heusler Compound/Muscovite for Flexible Spintronics

Yi-Cheng Chen, Min Yen, Yu-Hong Lai, Anastasios Markou, Liguo Zhang, Yi-Ying Chin, Hong-Ji Lin, Chien-Te Chen, Claudia FelserYing-Hao Chu
ACS Applied Materials and Interfaces, 卷.11(38), 頁碼.35162-35168
09/2019
PMID: 31476857

摘要

flexible Heusler compound magnetism muscovite spintronics Materials Science (all)
Materials with high spin-polarization play an important role in the development of spintronics. Co-based Heusler compounds are a promising candidate for practical applications because of their high Curie temperature and tunable half-metallicity. However, it is a challenge to integrate Heusler compounds into thin film heterostructures because of the lack of control on crystallinity and chemical disorder, critical factors of novel behaviors. Here, muscovite is introduced as a growth substrate to fabricate epitaxial Co 2 MnGa films with mechanical flexibility. The feature of heteroepitaxy is evidenced by the results of X-ray diffraction and transmission electron microscopy. Moreover, high chemical ordering with superior properties is delivered according to the observation of large Hall conductivity (680 ω -1 cm -1 ) and highly saturated magnetic moment (∼3.93 μ B /f.u.), matching well with bulk crystals. Furthermore, the excellence of magnetic and electrical properties is retained under the various mechanical bending conditions. Such a result suggests that the development of Co 2 MnGa/muscovite heteroepitaxy provides not only a pathway to the thin film heterostructure based on high-quality Heusler compounds but also a new aspect of spintronic applications on flexible substrates.

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