High sodium ion conducting inorganic composite solid electrolyte

Chemistry: electrical current producing apparatus – product – and – Current producing cell – elements – subcombinations and... – Include electrolyte chemically specified and method

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429304, 429305, H01M 618

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active

061175951

ABSTRACT:
A high sodium ion conducting inorganic composite solid electrolyte obtained by mixing Na.sub.4 Zr.sub.2 Si.sub.3 O.sub.12 with titanium oxide and sintering the resultant mixture and a method for the production of a high sodium ion conducting inorganic composite solid electrolyte, consisting essentially of the steps of mixing Na.sub.4 Zr.sub.2 Si.sub.3 O.sub.12 with titanium oxide and sintering the resultant mixture.

REFERENCES:
patent: 4833048 (1989-05-01), Dejonghe et al.
patent: 5169619 (1992-12-01), Yoshimoto et al.
Y. Saito, et al., "Ionic Conductivity Enhancement of Na.sub.4 Zr.sub.2 Si.sub.3 O.sub.12 by Dispersed Ferroelectric PZT", Mat. Res. Bull., vol. 23, 1988, pp. 1661-1665, No month in date, month unknown.
Saito et al., "Ionic Conductivity Enhancement of Na4Zr2Si3O12 by Dispersed Ferroelectric PZT", Mat. Res. Bull., vol. 23, 1988 (month unknown), pp. 1661-1665, 1988 No Month.
Shimazu et al., "Electrical Conductivity and Ti4+ Ion Substitution Range in NASICON System", Solid State Ionics, vol. 79, 1995 (month unavailable), pp. 106-110, 1995, No Month.
Nakamura et al., "Titanium Ion Substitution Ranges For Zirconium Ion in the Na1 + xZr2SixP3-xO12 System", vol. 89, 1996, pp. 159-164, 1996, No Month.

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