NASICON Membrane with High Ionic Conductivity Synthesized by High-Temperature Solid-State Reaction

Author:

Iordache Mihaela1ORCID,Oubraham Anisoara1,Petreanu Irina1ORCID,Sisu Claudia1,Borta Simona1,Capris Catalin1,Soare Amalia1,Marinoiu Adriana1ORCID

Affiliation:

1. National R&D Institute for Cryogenics and Isotopic Technologies—ICSI Ramnicu Valcea, Uzinei No. 4, 240050 Vâlcea, Romania

Abstract

In the present work, we studied the impact of excess Na addition on the structure of the standard NASICON ion conductor along with Na ion transport mechanisms. In this sense, NASICON ceramic membranes (NZSP) were prepared by a simple chemical synthesis method, the solid state reaction (SSR), using an excess of 5% Na (Na3.15Zr2Si2PO12) and an excess of 10% Na (Na3.3Zr2Si2PO12), in order to improve the conduction properties of the ceramic membrane. The characterization of the NZSP nanoparticles was performed by measuring the particle size by dynamic light scattering (DLS), the morphology of the NASICON samples pre-sintered at 1100 °C was analyzed by the SEM method (scanning electron microscope), and X-ray diffraction (XRD) analysis was used to investigate the crystal structure of samples, while the surface area was measured using the BET technique. The electrical properties (i.e., ionic conductivity) were evaluated by impedance spectroscopic methods at room temperature (RT). Following the experiments for NASICON membranes without Na excess, with 5% Na excess, and with 10% Na excess synthesized at different pressing forces and sintering temperatures, it was found that membranes with a 10% Na excess, sintered at 1175 °C for 10 h, presented a good ionic conductivity (4.72 × 10−4 S/cm).

Funder

Ministry of Research, Innovation, and Digitization of Romania

Publisher

MDPI AG

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The Chemical Stability of NASICON Solid Electrolyte for Seawater Batteries;2024 16th International Conference on Electronics, Computers and Artificial Intelligence (ECAI);2024-06-27

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