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@INPROCEEDINGS{Ma:863621,
author = {Ma, Qianli and Tsai, Chih-Long and Tietz, Frank and
Guillon, Olivier},
title = {{T}he re-discovery of {NASICON} materials},
reportid = {FZJ-2019-03633},
year = {2019},
abstract = {Despite of huge efforts, the lack of suitable candidate for
electrolytes still impedes the development of
all-solid-state Na batteries. Na3+xZr2Si2+xP1-xO12 (-0.2 ≤
x ≤ 0.2) are the very first composition series of NASICONs
discovered 40 years ago and were reported having a total
Na-ion conductivity of ~10-4 S cm-1 at room temperature. In
the present study, this composition series is reconsidered
and the focusing range of stoichiometry has been varied from
x = 0 to x = 0.6. A solution-assisted solid-state reaction
method is applied for powder preparation. Surprisingly, a
total conductivity of over 5 × 10-3 S cm-1 is achieved for
Na3.4Zr2Si2.4P0.6O12 (NZSP) at 25 °C, which is the best
value of all reported polycrystalline Na-ion conductors. A
bulk conductivity of about 1.5 × 10-2 S cm-1 is also
revealed by high frequency impedance spectroscopy up to 3
GHz for NZSP at 25 °C. The parameters influencing the total
conductivity are discussed in detail. Benefitted from the
superior total conductivity of NZSP, symmetric cells of
Na/NZSP/Na and full-ceramic cells of Na3V2P3O12
(NVP)/NZSP/NVP have been fabricated and tested at room
temperature with good cycling performance.},
month = {Jun},
date = {2019-06-16},
organization = {The 22nd International Conference on
Solid State Ionics 22nd International
Conference on Solid State Ionics,
PyeongChang (Korea), 16 Jun 2019 - 21
Jun 2019},
subtyp = {After Call},
cin = {IEK-1},
cid = {I:(DE-Juel1)IEK-1-20101013},
pnm = {131 - Electrochemical Storage (POF3-131)},
pid = {G:(DE-HGF)POF3-131},
typ = {PUB:(DE-HGF)6},
url = {https://juser.fz-juelich.de/record/863621},
}