Academic literature on the topic 'Na3Zr2Si2PO12'

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Journal articles on the topic "Na3Zr2Si2PO12"

1

Jalalian-Khakshour, A., C. O. Phillips, L. Jackson, T. O. Dunlop, S. Margadonna, and D. Deganello. "Solid-state synthesis of NASICON (Na3Zr2Si2PO12) using nanoparticle precursors for optimisation of ionic conductivity." Journal of Materials Science 55, no. 6 (2019): 2291–302. http://dx.doi.org/10.1007/s10853-019-04162-8.

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Abstract In this work, the effect of varying the size of the precursor raw materials SiO2 and ZrO2 in the solid-state synthesis of NASICON in the form Na3Zr2Si2PO12 was studied. Nanoscale and macro-scale precursor materials were selected for comparison purposes, and a range of sintering times were examined (10, 24 and 40 h) at a temperature of 1230 °C. Na3Zr2Si2PO12 pellets produced from nanopowder precursors were found to produce substantially higher ionic conductivities, with improved morphology and higher density than those produced from larger micron-scaled precursors. The nanoparticle pre
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2

Huang, Congcai, Guanming Yang, Wenhao Yu, et al. "Gallium-substituted Nasicon Na3Zr2Si2PO12 solid electrolytes." Journal of Alloys and Compounds 855 (February 2021): 157501. http://dx.doi.org/10.1016/j.jallcom.2020.157501.

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3

Nicholas, V. A., A. M. Heyns, A. I. Kingon, and J. B. Clark. "Reactions in the formation of Na3Zr2Si2PO12." Journal of Materials Science 21, no. 6 (1986): 1967–73. http://dx.doi.org/10.1007/bf00547935.

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4

Horwat, D., J. F. Pierson, and A. Billard. "Magnetron sputtering of NASICON (Na3Zr2Si2PO12) thin films." Surface and Coatings Technology 201, no. 16-17 (2007): 7060–65. http://dx.doi.org/10.1016/j.surfcoat.2007.01.016.

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5

Boilot, J. P., G. Collin, and Ph Colomban. "Crystal structure of the true nasicon: Na3Zr2Si2PO12." Materials Research Bulletin 22, no. 5 (1987): 669–76. http://dx.doi.org/10.1016/0025-5408(87)90116-4.

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6

Sadaoka, Y., M. Matsuguchi, Y. Sakai, and S. Nakayama. "Electrical conductivity of Na3Zr2Si2PO12-doped sodium aluminosilicate glass." Journal of Materials Science 24, no. 4 (1989): 1299–304. http://dx.doi.org/10.1007/bf02397062.

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7

Sadaoka, Y., M. Matsuguchi, Y. Sakai, and S. Nakayama. "Electrical conductivity of Na3Zr2Si2PO12-doped sodium aluminosilicate glass." Journal of Materials Science 24, no. 4 (1989): 1299–304. http://dx.doi.org/10.1007/pl00020211.

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8

Chen, Dan, Fa Luo, Wancheng Zhou, and Dongmei Zhu. "Dielectric properties in the microwave range of Na3Zr2Si2PO12 ceramics." Materials Letters 221 (June 2018): 172–74. http://dx.doi.org/10.1016/j.matlet.2018.03.128.

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9

Dinachandra Singh, Mayanglambam, Anshuman Dalvi, and D. M. Phase. "Na3Zr2Si2PO12-Polymer Hybrid Composites for Solid-State Supercapacitor Applications." ECS Meeting Abstracts MA2020-01, no. 4 (2020): 580. http://dx.doi.org/10.1149/ma2020-014580mtgabs.

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10

Di Vona, Maria Luisa, Enrico Traversa, and Silvia Licoccia. "Nonhydrolytic Synthesis of NASICON of Composition Na3Zr2Si2PO12: A Spectroscopic Study." Chemistry of Materials 13, no. 1 (2001): 141–44. http://dx.doi.org/10.1021/cm001128i.

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