材料科学
溶解
熔盐
化学工程
降水
原材料
稀土
单斜晶系
硅酸盐
矿物学
冶金
晶体结构
结晶学
化学
工程类
气象学
有机化学
物理
作者
Wei Peng,Lei Zhuang,Hulei Yu,Yexia Qin,Yanhui Chu
摘要
Abstract Synthesis of ultrafine powders of high‐entropy rare‐earth silicates (HERESs) is critical for expanding their applications. Here, we report the synthesis of ultrafine HERES powders via a simple molten salt method for the first time. The results show that the single‐phase high‐entropy rare‐earth disilicates (HEREDs) and monosilicates (HEREMs) with monoclinic crystal structures can be successfully synthesized at 1073 and 1173 K, with the content ratios of raw rare‐earth oxides to SiO 2 of 1:2.4 and 1:0.9, respectively. The average particle sizes of the as‐synthesized HEREDs and HEREMs powders are measured to be 1.32 and 1.64 μm, respectively. Meanwhile, uniform elemental distributions are confirmed in these powders without any element separation or segregation. In addition, a “dissolution–precipitation” mechanism is proposed to clarify the synthesis process of HERESs. This study not only provides a new synthesis methodology for HERES powders but also reveals a new insight into the growth mode for HERES powders.
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