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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Unlocking the structure of mixed amorphous-crystalline ceramic oxide films synthesized under low temperature electromagnetic excitation
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Unlocking the structure of mixed amorphous-crystalline ceramic oxide films synthesized under low temperature electromagnetic excitation

机译:解锁低温电磁激励下合成的混合无定形结晶陶瓷氧化物膜的结构

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The promise of using electromagnetic (EM) fields for low temperature materials synthesis is limited by our ability to structurally characterize these materials, which are often nanocrystalline or amorphous. Here we demonstrate that synchrotron X-ray radiation coupled with the recently developed thin film pair distribution function (tfPDF) analysis yields quantitative information about mixtures of crystalline and non-crystalline materials synthesized under EM excitation, which represents a new direction to study the chemical reactions and lattice ordering induced by EM fields. Our experiments demonstrate for the first time that ceramic oxide films of titanium dioxide (TiO2) grown under microwave radiation (MWR) exposure contain a different phase composition and increased crystallinity compared to TiO2 grown at similar temperatures without EM fields. Specifically, the field-assisted TiO2 is composed of a mixed-phase structure consisting of long-range anatase TiO2 phase with short-range amorphous components, while furnace-grown materials are amorphous with local ordering most resembling the brookite phase of TiO2. The disordered component of MWR-grown TiO2 results in a slightly narrower energy band gap relative to fully crystalline anatase, indicating enhanced light absorption in the visible spectrum. The impact of EM field-influenced atomic structure on resultant material properties creates the opportunity to utilize MWR-assisted synthesis as a novel method for rapid, single-step, low temperature synthesis of mixed ordered-disordered materials for potential use in photocatalysis, thermoelectrics, or lithiumion batteries.
机译:用于低温材料合成的使用电磁(EM)场的承诺受我们在结构上表征这些材料的能力的限制,这通常是纳米晶体或无定形的。在这里,我们证明了与最近开发的薄膜对分布功能(TFPDF)分析的同步X射线辐射产生关于在EM激发下合成的结晶和非晶体材料的混合物的定量信息,这代表了研究化学反应的新方向和EM领域引起的晶格排序。我们的实验首次证明了在微波辐射(MWR)暴露下生长的二氧化钛(TiO 2)的陶瓷氧化物膜含有不同的相组合物和与在没有EM场的类似温度的TiO 2相比增加了结晶度。具体地,现场辅助的TiO2由混合相结构组成,该混合相结构由具有短范围的无定形组分组成的混合相结构,而炉长材料是与局部排序最类似于TiO2的野蛮阶段的无定形物。 MWR生长的TiO2的无序分量导致相对于完全结晶的锐钛矿略微较窄的能带隙,表明可见光谱中的增强光吸收。影响物质结构对所得物质性质的影响产生了利用MWR辅助合成作为一种新的快速,单步,低温合成的混合有序无序材料的新方法,以便在光催化,热电,或锂电池。

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