钙钛矿(结构)
焦绿石
相(物质)
固态
材料科学
动力学
纳米技术
固相合成
化学
物理
结晶学
物理化学
有机化学
生物化学
量子力学
肽
作者
Lin Yang,Zhewen Zhu,Yitian Feng,Daxian Zuo,Shi Huang,Yao Yang,Lihui Zhou,Stephen J. Harris,Lin Zeng,Yizhou Zhu,Jiayu Wan
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-07-25
卷期号:11 (30)
标识
DOI:10.1126/sciadv.adx3927
摘要
The precise synthesis of high-purity materials is crucial in accelerating materials discovery. However, the lack of theoretical understanding and practical guidance poses challenges, particularly for materials with compositional and structural complexity. Here, we propose a feasible principle toward synthesizing complex inorganic solids. This principle involves the introduction of an inducer that induces crucial intermediates, which in turn guide the synthesis pathway toward the target materials through structural templating, named inducer-facilitated assembly through structural templating (i-FAST). We validate this principle with three distinct oxides: garnet Li6.5La3Zr1.5Ta0.5O12, perovskite BaCo0.8Sn0.2O3, and pyrochlore Gd1.5La0.5Zr2O7. This structural templating approach enables synthesis along predesigned pathways, forming intermediates that are thermodynamically favored for prior formation and kinetically preferred for the final product, resulting in precisely synthesizing high-purity target materials. This study not only represents a substantial advancement in comprehending the interplay between thermodynamics/kinetics and phase evolution in complex solid synthesis but also provides an effective strategy for guiding exploratory solid-state synthesis.
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