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On the roles of graphene oxide doping for enhanced supercurrent in MgB 2 based superconductors

journal contribution
posted on 2024-11-16, 09:55 authored by Wai Kong Yeoh, X Y Cui, B Gault, Kaludewa De Silva, Xun XuXun Xu, H W Liu, H -W Yen, D Wong, P Bao, D J Larson, I Martin, Wenxian Li, R K Zheng, Xiaolin WangXiaolin Wang, Shi DouShi Dou, S P Ringer
Due to their graphene-like properties after oxygen reduction, incorporation of graphene oxide (GO) sheets into correlated-electron materials offers a new pathway for tailoring their properties. Fabricating GO nanocomposites with polycrystalline MgB2 superconductors leads to an order of magnitude enhancement of the supercurrent at 5 K/8 T and 20 K/4 T. Herein, we introduce a novel experimental approach to overcome the formidable challenge of performing quantitative microscopy and microanalysis of such composites, so as to unveil how GO doping influences the structure and hence the material properties. Atom probe microscopy and electron microscopy were used to directly image the GO within the MgB2, and we combined these data with computational simulations to derive the property-enhancing mechanisms. Our results reveal synergetic effects of GO, namely, via localized atomic (carbon and oxygen) doping as well as texturing of the crystals, which provide both inter- and intra-granular flux pinning. This study opens up new insights into how low-dimensional nanostructures can be integrated into composites to modify the overall properties, using a methodology amenable to a wide range of applications.

Funding

Synergetic combination of localised internal magnesium diffusion process with cold compaction technique for fabrication of magnesium diboride (MgB2) superconductor wires

Australian Research Council

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History

Citation

Yeoh, W. K., Cui, X. Y., Gault, B., De Silva, K. S. B., Xu, X., Liu, H. W., Yen, H., Wong, D., Bao, P., Larson, D. J., Martin, I., Li, W. X., Zheng, R. K., Wang, X. L., Dou, S. X. & Ringer, S. P. (2014). On the roles of graphene oxide doping for enhanced supercurrent in MgB 2 based superconductors. Nanoscale, 6 (11), 6166-6172.

Journal title

Nanoscale

Volume

6

Issue

11

Pagination

6166-6172

Language

English

RIS ID

90567

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