Chikamatsu Akira, Kawahara Keisuke, Shiina Takaaki, Onozuka Tomoya, Katayama Tsukasa, Hasegawa Tetsuya
Department of Chemistry, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
ACS Omega. 2018 Oct 12;3(10):13141-13145. doi: 10.1021/acsomega.8b02252. eCollection 2018 Oct 31.
Metal fluorides are gathering significant interest for use in many applications, such as optical glasses, chemical sensors, and solid electrolytes using fluoride ion batteries, due to their high transparency over a wide wavelength range (ultraviolet to infrared) and fast fluoride ion conductivity. Here, we present a topotactic route for synthesizing thin films of fluorite-type BaBiF (BBF), a promising fluoride ion conductor, from perovskite-type BaBiO (BBO) precursor films by fluorination using poly(vinylidene fluoride). The fluorination reaction fully converted BBO to BBF without stopping at the oxyfluoride stage. The BBF films obtained at relatively low reaction temperatures (150-200 °C) showed Ba/Bi cation ordering in the [001] direction, indicating that the cation framework of perovskite BBO was maintained during the fluorination reaction. Meanwhile, increasing the fluorination temperature led to mixtures of cations, resulting in random distribution of Ba and Bi. This demonstrates that the degree of cation ordering in BBF can be controlled by adjusting the fluorination temperature.
金属氟化物因其在宽波长范围(紫外到红外)具有高透明度以及快速的氟离子传导性,在许多应用中受到了广泛关注,如光学玻璃、化学传感器以及使用氟离子电池的固体电解质等。在此,我们展示了一种从钙钛矿型BaBiO(BBO)前驱体薄膜通过聚偏氟乙烯氟化合成萤石型BaBiF(BBF)薄膜的拓扑转化路线,BBF是一种很有前景的氟离子导体。氟化反应将BBO完全转化为BBF,而没有停留在氟氧化物阶段。在相对较低反应温度(150 - 200°C)下获得的BBF薄膜在[001]方向上显示出Ba/Bi阳离子有序排列,这表明在氟化反应过程中钙钛矿BBO的阳离子骨架得以保留。同时,提高氟化温度会导致阳离子混合,从而使Ba和Bi随机分布。这表明可以通过调节氟化温度来控制BBF中阳离子的有序程度。