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Size-induced amorphous structure in tungsten oxide nanoparticles

机译:在氧化钨Size-induced无定形结构纳米粒子

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The properties of functional materials are intrinsically linked to their atomic structure. When going to the nanoscale, size-induced structural changes in atomic structure often occur, however these are rarely well-understood. Here, we systematically investigate the atomic structure of tungsten oxide nanoparticles as a function of the nanoparticle size and observe drastic changes when the particles are smaller than 5 nm, where the particles are amorphous. The tungsten oxide nanoparticles are synthesized by thermal decomposition of ammonium metatungstate hydrate in oleylamine and by varying the ammonium metatungstate hydrate concentration, the nanoparticle size, shape and structure can be controlled. At low concentrations, nanoparticles with a diameter of 2–4 nm form and adopt an amorphous structure that locally resembles the structure of polyoxometalate clusters. When the concentration is increased the nanoparticles become elongated and form nanocrystalline rods up to 50 nm in length. The study thus reveals a size-dependent amorphous structure when going to the nanoscale and provides further knowledge on how metal oxide crystal structures change at extreme length scales.
机译:功能材料的性质原子结构的内在联系。将纳米级时,size-induced结构在原子结构经常变化很少发生,但是这些都是容易理解的。在这里,我们系统地研究原子氧化钨纳米颗粒的结构功能纳米颗粒大小和观察急剧变化时,颗粒更小5 nm,无定形颗粒。氧化钨纳米颗粒合成metatungstate铵的热分解油酰胺水合物和不同铵metatungstate水合物浓度,纳米颗粒大小、形状和结构控制。直径2 - 4海里,并采用一种形式非晶结构,类似于本地polyoxometalate集群结构。纳米粒子浓度增加变得细长,形成纳米晶体棒50 nm长。尺度依赖的非晶态结构时纳米尺度上,并提供进一步的知识金属氧化物晶体结构如何变化极端的长度尺度。

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