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Nanosize-Controlled Syntheses of Indium Metal Particles and Hollow Indium Oxide Particles via the Sputter Deposition Technique in Ionic Liquids

机译:离子液体中通过溅射沉积技术纳米控制的铟金属粒子和空心氧化铟粒子的合成

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摘要

Sputter deposition of indium (In) in ionic liquids (ILs) could produce stable In metal nanoparticles whose surface was covered by an amorphous In2O3 layer to form In/In2O3 core/shell particles. The size of the In core was tunable from ca. 8 to 20 nm by selecting the kind of IL, whereas the shell thickness ofIn2O3 was almost constant at ca. 1.9 nm. Heat treatment of the thus-obtained particles at 523 Kin air oxidized In metal of the core, resulting in the formation of spherical hollow particles made of crystalline In2O3. The size of the hollow particles was slightly larger than that of the In/In2O3 core/shell particles used as a starting material, whereas the void space formed inside hollow particles was smaller than the corresponding In metal cores. These facts indicated that in addition to the predominant outward diffusion of In ions, an inward transport of oxygen ions occurred, and thus an In2O3 crystal could be grown on both the inner concave and outer convex surfaces of the oxide shell layer.
机译:铟(In)在离子液体(ILs)中的溅射沉积可产生稳定的In金属纳米颗粒,其表面被非晶In2O3层覆盖,形成In / In2O3核/壳颗粒。 In核的大小可从ca调整到。通过选择IL的种类在8到20 nm之间,而In2O3的壳厚度几乎恒定在ca。 1.9纳米如此获得的颗粒在523 Kin空气中被氧化成核的In金属进行热处理,从而形成了由晶体In2O3制成的球形空心颗粒。中空颗粒的尺寸略大于用作起始材料的In / In 2 O 3核/壳颗粒的尺寸,而在中空颗粒内部形成的空隙空间小于相应的In金属核。这些事实表明,除了主要的In离子向外扩散之外,还发生了氧离子的向内迁移,因此可以在氧化物壳层的内凹和外凸表面上生长In 2 O 3晶体。

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