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Realizing High-Quality Interfaces in Two-Dimensional Material Spin Valves AITranslate

National Taiwan University; National Taiwan University; Chung Yuan Christian University; Chung Yuan Christian University; National Taiwan University;Institute of Atomic and Molecular Sciences; National Taiwan University
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Publisher: ACS
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Abstract AITranslate

Two-dimensional (2D) materials are considered enabling components in magnetic spin valves that could increase the performance and robustness of spintronic devices. However, experimental results have been below expectations due to challenges in achieving contamination-free interfaces between the 2D material barrier and its ferromagnetic contacts. We demonstrate an approach to realize interfaces with unprecedented quality using a single-step fabrication approach. By simultaneously depositing two asymmetric contacts on a suspended 2D material, the effect of oxidation and voiding can be avoided. Graphene-based spin valves show a strong interaction at the interface that leads to exceptional magnetoresistance values. This advance permits the characterization of the intrinsic spin properties at the Co/graphene interface, and we establish the limitations of traditional Hanle-based spin-lifetime measurements. Finally, we investigate the differences in spin transport for multilayer graphene-based spin valves. An increased level of spin-scattering is observed that limits the achievable performance and provides guidelines for the future integration of 2D materials in spintronic devices.

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DOI:https://doi.org/10.1021/acsmaterialslett.3c01194

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Citation Information:

Two-dimensional (2D) materials are considered enabling components in magnetic spin valves that could increase the performance and robustness of spintronic devices. However, experimental results have been below expectations due to challenges in achieving contamination-free interfaces between the 2D material barrier and its ferromagnetic contacts. We demonstrate an approach to realize interfaces with unprecedented quality using a single-step fabrication approach. By simultaneously depositing two asymmetric contacts on a suspended 2D material, the effect of oxidation and voiding can be avoided. Graphene-based spin valves show a strong interaction at the interface that leads to exceptional magnetoresistance values. This advance permits the characterization of the intrinsic spin properties at the Co/graphene interface, and we establish the limitations of traditional Hanle-based spin-lifetime measurements. Finally, we investigate the differences in spin transport for multilayer graphene-based spin valves. An increased level of spin-scattering is observed that limits the achievable performance and provides guidelines for the future integration of 2D materials in spintronic devices.

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GB/T 7714-2015 [1] TingChun Huang, WenHua Wu, MengTing Wu, et al. ACS Materials Letters, 2024(6). DOI:10.1021/acsmaterialslett.3c01194.
MLA [1] TingChun Huang, et al., ACS Materials Letters, no. 6, 2024, https://doi.org/10.1021/acsmaterialslett.3c01194.
APA [1] TingChun Huang, WenHua Wu, MengTing Wu, Chiashain Chuang, ChiFeng Pai, YaPing Hsieh, & Mario Hofmann. (2024). ACS Materials Letters(6). https://doi.org/10.1021/acsmaterialslett.3c01194
IEEE [1] TingChun Huang, WenHua Wu, MengTing Wu, Chiashain Chuang, ChiFeng Pai, YaPing Hsieh, and Mario Hofmann, ACS Materials Letters, no. 6, 2024, doi: 10.1021/acsmaterialslett.3c01194.