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首页> 外文期刊>Journal of Molecular Liquids >Features of inorganic nanocrystals formation in conditions of successive ionic layers deposition in water solutions and the Co(II)Co(III) 2D layered double hydroxide synthesis
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Features of inorganic nanocrystals formation in conditions of successive ionic layers deposition in water solutions and the Co(II)Co(III) 2D layered double hydroxide synthesis

机译:在水溶液中连续离子层沉积条件下无机纳米晶体形成的特征及CO(III)CO(III)2D层双氢氧化物合成

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The article provides a brief overview of the results concerning synthesis of inorganic nanocrystals including such compounds as Ag, Au, NiO1+x center dot nH(2)O, CoAl and ZnCo layered double hydroxides (LDH) by Successive Ionic Layer Deposition (SILD) method in aqueous solutions. It is shown that by specifying the synthesis conditions, for example, the number of SILD cycles, it is possible to change the size of nanocrystals, and for 2D crystals - their orientation with respect to the substrate. Along with this, in the article for the first time a novel SILD route of Co(II)Co(III) LDH synthesis is presented. It was stated that the nanolayers of this compound consist of randomly oriented 2D nanocrystals aggregates with hexagonal hydrotalcite-like crystal structure, each of which has a thickness of less than 3 nm. The method is based on the sequential processing of the substrate in aqueous solutions of CoCl2 and NaBH4 salts of certain concentrations and intermediate washing excess of these reagents with distilled water. The obtained nanolayers were characterized via SEM, TEM, XRD, FT-IR and XPS methods. Models of chemical processes occurring on the surface during the synthesis were suggested on the basis of the obtained experimental results. The samples were acquired on the nickel foam (NF) surface and were studied as electrodes for pseudocapacitors and as electrocatalysts for oxygen evolution reaction (OER) in alkaline medium. The electrodes of the pseudocapacitor showed high specific capacitance (2260 F/g at the current density of 1 A/g), as well as good cyclic stability (after 500 charge-discharge cycles, the capacitance drop do not exceed 2%). In addition, the obtained material showed a high electrocatalytic activity for OER in alkaline medium, characterized at a current density of 10 mA/cm(2) by a relatively low overpotential of 285 mV and Tafel slope of 95 mV/dec (C) 2019 Elsevier B.V. All rights reserved.
机译:本文简要概述了通过连续离子层沉积(SILD)作为Ag,Au,NiO1 + X中心,煤和ZnCo层叠双氢氧化物(LDH)的制备无机纳米晶体的合成结果简要概述水溶液中的方法。结果表明,通过指定合成条件,例如,Sill循环的数量,可以改变纳米晶体的尺寸,以及2D晶体 - 相对于基材的取向。除此之外,在第一次第一次新的CO(II)CO(III)LDH合成的新型Sild途径中。据说该化合物的纳米体由随机取向的2D纳米晶体组成,其含有六边形水滑石的晶体结构,每个晶体结构具有小于3nm的厚度。该方法基于在COCl2和NaBH 4水溶液中的衬底的顺序处理,并用蒸馏水中的这些试剂中的中间洗涤过量。通过SEM,TEM,XRD,FT-IR和XPS方法表征获得的纳米层。在合成期间,在合成期间发生的化学过程的模型是在获得的实验结果的基础上提出的。在镍泡沫(NF)表面上获得样品,并作为假壳体的电极进行研究,作为碱性介质中的氧化反应(Oer)的电极催化剂。假偶联机的电极显示出高的比电容(在电流密度为1A / g的电流密度为2260f / g),以及良好的循环稳定性(500次充电放电循环后,电容下降不超过2%)。此外,所获得的材料显示出碱性介质中的oer的高电催化活性,其特征在于通过相对较低的285mV和Tafel斜率为95mV / dec(c)2019(c)的电流密度为10mA / cm(2)的电流密度ElseVier BV版权所有。

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