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Investigation of Reaction Mechanisms of Bismuth Tellurium Selenide Nanomaterials for Simple Reaction Manipulation Causing Effective Adjustment of Thermoelectric Properties

机译:有效调节热电性质的硒化碲碲铋纳米材料反应机理的研究

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We synthesized ternary n-rype bismuth tellurium selenide nanomaterials for thermoelectric applications via a water-based chemical reaction under an atmospheric environment. In this work, bismuth nitrate was employed as a bismuth precursor and was hydrolyzed to form bismuth hydroxide in an aqueous solution. Ascorbic acid was used to dissolve the bismuth hydroxide and give a reactive bismuth source (Bi~(3+) ions) that was able to react with anion sources (Te~(2-)/Se~(2-) ions). Ascorbic acid played a role in reducing bismuth hydroxide to an unreactive bismuth source (bismuth particles, Bi~0). We confirmed that ascorbic acid dissolved or reduced bismuth hydroxide depending on the solution pH. Because either Bi~(3+) ions or bismuth particles were generated depending on the pH, the nanomaterial stoichiometry was pH dependent. Nanomaterials prepared at various pH levels were individually sintered using a spark plasma sintering process to measure their thermoelectric transport properties (i.e., carrier concentration, electrical resistivity, Seebeck coefficient, and thermal conductivity). We observed how the transport properties were affected through adjustment of the pH of the reaction and found an appropriate pH for optimizing the transport properties, which resulted in enhancement of the thermoelectric performance.
机译:我们通过在大气环境下通过水基化学反应合成了用于热电应用的三元正-N-铋铋硒化碲纳米材料。在这项工作中,硝酸铋被用作铋的前体,并在水溶液中水解形成氢氧化铋。用抗坏血酸溶解氢氧化铋,得到能与阴离子源(Te〜(2-)/ Se〜(2-)离子反应的活性铋源(Bi〜(3+)离子)。抗坏血酸在将氢氧化铋还原成不活泼的铋源(铋粒子,Bi〜0)方面发挥了作用。我们确认抗坏血酸溶解或还原的氢氧化铋取决于溶液的pH值。由于根据pH值生成Bi〜(3+)离子或铋粒子,因此纳米材料的化学计量是pH值依赖性的。使用火花等离子体烧结工艺分别烧结在各种pH值下制备的纳米材料,以测量其热电传输性能(即载流子浓度,电阻率,塞贝克系数和热导率)。我们观察了如何通过调节反应的pH值来影响传输性能,并找到了合适的pH值来优化传输性能,从而提高了热电性能。

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