• Journal of Inorganic Materials
  • Vol. 36, Issue 1, 95 (2021)
Lu SHEN1, Dewen WANG2, Rong HUANG3, Shiyu DU1, and Qing HUANG1、*
Author Affiliations
  • 1Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China
  • 2Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China
  • 3Key Laboratory of Polar Materials and Devices (MOE), Department of Electronics, East China Normal University, Shanghai 200062, China
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    DOI: 10.15541/jim20190564 Cite this Article
    Lu SHEN, Dewen WANG, Rong HUANG, Shiyu DU, Qing HUANG. Electron Irradiation Induced Phase-separation Behavior in AlF3 Doped Alumina Ceramic with Superior Sensitivity[J]. Journal of Inorganic Materials, 2021, 36(1): 95 Copy Citation Text show less
    References

    [1] K KANEKO, T KATO, M KITAYAMA et al. Precipitation of MgO. nAl2O3 in Mg-Doped α-Al2O3 under electron irradiation. Journal of the American Ceramic Society, 86, 161-168(2003).

    [2] E BONEVICH J, D MARKS L. Electron radiation damage of α-alumina. Ultramicroscopy, 35, 161-166(1991).

    [3] Y TOMOKIYO, T MANABE, C KINOSHITA. Structural change induced near surfaces of α-Al2O3 during electron irradiation.. Microscopy Microanalysis Microstructures, 4, 331-339(1993).

    [4] Y TOMOKIYO, T KUROIWA, C KINOSHITA. Defects occurring at or near surfaces in α-Al2O3 during electron irradiation. Ultramicroscopy, 39, 213-221(1991).

    [5] L CHEN C, K ARAKAWA, G LEE J et al. Electron-irradiation- induced phase transformation in alumina. Scripta Materialia, 63, 1013-1016(2010).

    [6] H OH S, Y KAUFFMANN, C SCHEU et al. Ordered liquid aluminum at the interface with sapphire. Science, 310, 661-663(2005).

    [7] P PELLS AERE G, T SHIKAMA. Radiation damage in pure and helium-doped α-Al2O3 in the HVEM Quantitative aspects of void and aluminium precipitate formation. Philosophical Magazine A, 48, 779-794(1983).

    [8] L CHEN C, H FURUSHO, H MORI. In situ TEM observation of decomposition of high-purity sapphire. Philosophical Magazine Letters, 89, 113-119(2009).

    [9] L CHEN C, H FURUSHO, H MORI. Effects of temperature and electron energy on the electron-irradiation-induced decomposition of sapphire. Philosophical Magazine Letters, 90, 715-721(2010).

    [10] D BOUCHET, C COLLIEX. Experimental study of ELNES at grain boundaries in alumina: intergranular radiation damage effects on Al-L23 and OK edges. Ultramicroscopy, 96, 139-152(2003).

    [11] D BERGER S, G SALISBURY I, H MILNE R et al. Electron energy-loss spectroscopy studies of nanometre-scale structures in alumina produced by intense electron-beam irradiation. Philosophical Magazine B, 55, 341-358(1987).

    [12] D WANG, L SHEN, S RAN et al. Transparent alumina fabricated by SPS sintering with AlF3 doping. Scripta Materialia, 92, 31-34(2014).

    [13] S CHEN G, B BOOTHROYD C, J HUMPHREYS C. Electron- beam induced crystallization transition in self-developing amorphous AlF3 resists. Applied Physics Letters, 69, 170-172(1996).

    [14] C MA, Y BERTA, L WANG Z. Patterned aluminum nanowires produced by electron beam at the surfaces of AlF3 single crystals. Solid State Communications, 129, 681-685(2004).

    [15] J GHATAK, T GNANAVEL, W GUAN et al. Electron Beam Synthesis of 3D Metal Nanostructures from Fluoride Precursors. MRS Online Proceedings Library Archive, 1411(2012).

    [16] J WANG, L GAO. Photoluminescence properties of nanocrystalline ZnO ceramics prepared by pressureless sintering and spark plasma sintering. Journal of the American Ceramic Society, 88, 1637-1639(2005).

    [17] T JIANG D, K MUKHERJEE A. The influence of oxygen vacancy on the optical transmission of an yttria-magnesia nanocomposite. Scripta Materialia, 64, 1095-1097(2011).

    [18] S MEIR, S KALABUKHOV, N FROUMIN et al. Synthesis and densification of transparent magnesium aluminate spinel by SPS processing. Journal of the American Ceramic Society, 92, 358-364(2009).

    [19] I REIMANIS, J KLEEBE H. A review on the sintering and microstructure development of transparent spinel (MgAl2O4). Journal of the American Ceramic Society, 92, 1472-1480(2009).

    [20] B WILLIAMS D, B CARTER C. Transmission Electron Microscopy: a Textbook for Materials Science, 2nd edition, 271-282(2009).

    [21] H HEUER A, D LAGERLOF K P, J CASTAING. Slip and twinning dislocations in sapphire (α-Al2O3). Philosophical Magazine A, 78, 747-763(1998).

    [22] M CASTILLO-RODRIGUEZ, A MUNOZ, J CASTAING et al. Basal slip latent hardening by prism plane slip dislocations in sapphire(α-Al2O3). Acta Materialia, 58, 5610-5619(2010).

    [23] R MARDER, R CHAIM, G CHEVALLIER et al. Effect of 1wt% LiF additive on the densification of nanocrystalline Y2O3 ceramics by spark plasma sintering. Journal of the European Ceramic Society, 31, 1057-1066(2011).

    Lu SHEN, Dewen WANG, Rong HUANG, Shiyu DU, Qing HUANG. Electron Irradiation Induced Phase-separation Behavior in AlF3 Doped Alumina Ceramic with Superior Sensitivity[J]. Journal of Inorganic Materials, 2021, 36(1): 95
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