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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Sequential Growth in Solution of NiFe Prussian Blue coordination network nanolayers on Si(100) surfaces
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Sequential Growth in Solution of NiFe Prussian Blue coordination network nanolayers on Si(100) surfaces

机译:Si(100)表面上NiFe普鲁士蓝配位网络纳米层溶液的连续生长

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Controlling the elaboration of Coordination Networks (CoNet) on surfaces at the nanoscale remains a challenge. One suitable technique is the Sequential Growth in Solution (SGS), which has the advantage to be simple, cheap and fast. We addressed two issues in this article: i) the controlled synthesis of ultra thin films of CoNet (thickness lower than 10 nm), and ii) the investigation of the influence of the precursors' concentration on the growth process. Si(100) was used because it is possible to prepare atomically flat Si-H surfaces, which is necessary for the growth of ultrathin films. We used, as a model system, the sequential reactions of K _4[Fe ~(II)(CN) _6] and [Ni ~(II)(H _2O) _6]Cl _2 that occur by the substitution of the water molecules in the coordination sphere of Ni ~(II) by the nitrogen atoms of ferrocyanide. We demonstrated that the nature of the deposited film depends mainly on the relative concentration of the anchoring sites versus the precursors' solution. Attenuated Total Reflection Fourier Transformed Infra Red (ATR-FTIR), X-ray reflectivity, X-ray Photoelectron Spectroscopy (XPS) and Atomic Force Microscopy (AFM) were used to characterize the steps of the growth process.
机译:在纳米级的表面上控制配位网络(CoNet)的加工仍然是一个挑战。一种合适的技术是溶液的顺序生长(SGS),它具有简单,便宜和快速的优点。我们在本文中讨论了两个问题:i)CoNet超薄膜的受控合成(厚度小于10 nm),以及ii)研究前体浓度对生长过程的影响。使用Si(100)是因为可以制备原子平坦的Si-H表面,这对于超薄膜的生长是必需的。我们使用K_4 [Fe〜(II)(CN)_6]和[Ni〜(II)(H _2O)_6] Cl _2的顺序反应作为模型系统,这些反应是通过替换水中的分子通过亚铁氰化物的氮原子形成Ni〜(II)的配位球。我们证明了沉积膜的性质主要取决于锚固位点相对于前体溶液的相对浓度。使用衰减全反射傅立叶变换红外(ATR-FTIR),X射线反射率,X射线光电子能谱(XPS)和原子力显微镜(AFM)来表征生长过程的步骤。

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