de la Huerta-Hernández Gloria E, Rodríguez-Flores Tatiana, Reyes-Montero Armando, Castro-Cisneros Iván, Hernández-Pérez Isaías, Chávez-Carvayar José A
Departamento de Ciencias Básicas, Universidad Autónoma Metropolitana-Azcapotzalco, Av. San Pablo 180, Col. Reynosa Tamaulipas, Ciudad de México 02200, Mexico.
Instituto de Investigaciones en Materiales, Universidad Nacional Autónoma de México, Ciudad Universitaria, Ciudad de México 04510, Mexico.
R Soc Open Sci. 2024 Dec 11;11(12):240627. doi: 10.1098/rsos.240627. eCollection 2024 Dec.
The sonochemical method is a novel synthesis route that takes advantage of the use of ultrasonic radiation to obtain different nanomaterials with an improvement in the process variables and material characteristics. In this work, two different synthesis routes to obtain a double perovskite structure were compared in detail. The Pechini synthesis method is a widely used and effective way to obtain this kind of structure by the formation of a cross-linked network of metal cations. Alternatively, in sonochemistry, chemical reactions occur with the application of powerful ultrasound radiation. The final characteristics of synthesized powders of LaSrFeCoO (LSFC) were analysed thermally, structurally, morphologically and optically, and their transport properties were evaluated to determine their semiconductor character in a solid oxide fuel cell device and in photocatalytic processes. Structural results indicated a well crystallized perovskite structure with a single cubic phase. The cell parameter (approx. 3.89 Å) and crystal size measurements (11-20 nm) were determined by Rietveld refinement for samples obtained by both synthesis methods. Thescanning electron microscope micrographs showed aggregates with homogeneous morphology and a uniform particle size distribution, with a rough and porous surface. Optical properties were determined by ultraviolet-visible spectrophotometry and photoluminescence, resulting in an of 1.2 and 0.8 eV in samples from Pechini and sonochemistry, respectively.
声化学方法是一种新颖的合成途径,它利用超声辐射来获得不同的纳米材料,同时改善工艺变量和材料特性。在这项工作中,详细比较了两种获得双钙钛矿结构的不同合成路线。佩琴尼合成法是一种广泛使用且有效的方法,通过形成金属阳离子的交联网络来获得这种结构。另外,在声化学中,化学反应是在强大的超声辐射作用下发生的。对合成的LaSrFeCoO(LSFC)粉末的最终特性进行了热学、结构、形态和光学分析,并评估了它们的传输特性,以确定其在固体氧化物燃料电池装置和光催化过程中的半导体特性。结构结果表明形成了具有单一立方相的结晶良好的钙钛矿结构。通过Rietveld精修法确定了两种合成方法所得样品的晶胞参数(约3.89 Å)和晶体尺寸测量值(11 - 20 nm)。扫描电子显微镜照片显示聚集体形态均匀,粒径分布均匀,表面粗糙且多孔。通过紫外 - 可见分光光度法和光致发光确定光学性质,佩琴尼法和声化学法所得样品的带隙分别为1.2 eV和0.8 eV。