Doyle Spencer, Tewolde Berhane Edvin, Zou Peichao, Turkiewicz Ari B, Zhang Yang, Brooks Charles M, El Baggari Ismail, Xin Huolin L, Mundy Julia A
Department of Physics, Harvard University, Cambridge, Massachusetts 02138, United States.
Department of Physics and Astronomy, University of California, Irvine, California 92697, United States.
ACS Omega. 2024 Sep 2;9(37):39082-39087. doi: 10.1021/acsomega.4c05872. eCollection 2024 Sep 17.
Fluoride-ion batteries have several potential advantages over lithium-ion batteries. Materials development is still needed, however, to realize electrolytes with sufficiently high anion conductivity and compatibility with anode and cathode layers. Fluoride compounds are difficult to synthesize directly as single crystals but can be realized from oxide film precursors via topotactic chemistry techniques. Here, we create crystalline alkaline earth bismuth fluoride films BaBiF and SrBiF through oxide molecular beam epitaxy and topotactic fluorination. We characterize their ionic conductivities and demonstrate their potential as electrolytes. Finally, we realize epitaxial synthesis of BaBiF on BaF substrates, providing a route to thin film fluoride-ion battery devices.
与锂离子电池相比,氟离子电池具有几个潜在优势。然而,仍需要进行材料开发,以实现具有足够高阴离子导电性且与阳极和阴极层兼容的电解质。氟化物化合物难以直接合成单晶,但可以通过拓扑化学技术从氧化膜前驱体中实现。在此,我们通过氧化物分子束外延和拓扑氟化制备了结晶性碱土铋氟化物薄膜BaBiF和SrBiF。我们对它们的离子电导率进行了表征,并证明了它们作为电解质的潜力。最后,我们在BaF衬底上实现了BaBiF的外延合成,为薄膜氟离子电池器件提供了一条途径。