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首页> 外文期刊>Electrochimica Acta >Galvanic displacement reaction of nickel to form one-dimensional trigonal tellurium structures in acidic solutions
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Galvanic displacement reaction of nickel to form one-dimensional trigonal tellurium structures in acidic solutions

机译:镍的电催化反应在酸性溶液中形成一维三角碲结构

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Trigonal tellurium micro-wires and tubes were synthesized by galvanic displacement of nickel in acidic sulfate solutions where the growth mechanism was elucidated using various electroanalytical methods and material characterization. The effects of solution composition, including concentrations of tellurium precursor and sulfate, were studied. The transition from micro-wires to tubes with an increase in HTeO2+ concentration was observed, which might be attributed to the comparable diffusion length scale of tellurium on the cylindrical seed surface to the radius of the seed. On the other hand, increasing H2SO4 concentration led to transformation of microtubes to microwires owing to reduction deposition rate and limited mass transfer of HTeO2+ ions. The effect of other anions (i.e., Cl- and NO3-) on galvanic displacement reaction was also studied. As a strong oxidant, HNO3 dissolved nickel faster than SO4-2 and Cl-, but showed slower tellurium deposition tellurium nanowires, which might be due to co-reduction of nitrate ions. The preferential adsorption of Cl- increased both dissolution of nickel and the deposition of tellurium, resulting in larger tellurium microtubes. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过在酸性硫酸镍溶液中的镍的电催化位移来合成三角形碲微导线和管,其中使用各种电扫描方法和材料表征阐明生长机理。研究了溶液组合物的作用,包括碲前体和硫酸盐的浓度。观察到从微线到管道的过渡,随着HTEO2 +浓度的增加,这可能归因于圆柱形种子表面上碲的可比较长度标度到种子的半径。另一方面,由于HTEO 2 +离子的减少和有限的传质,增加了H2SO4浓度导致微管的转化为微线。还研究了其他阴离子(即Cl-和NO 3-)对电致置位反应的影响。作为一种强氧化剂,HNO3溶解镍比SO4-2和CL-更快,但显示出较慢的碲沉积碲纳米线,这可能是由于硝酸根离子的共同还原。 Cl-增加镍的溶解和碲沉积的优先吸附,得到较大的碲微管。 (c)2019 Elsevier Ltd.保留所有权利。

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