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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A developed Ullmann reaction to III-V semiconductor nanocrystals in sealed vacuum tubes
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A developed Ullmann reaction to III-V semiconductor nanocrystals in sealed vacuum tubes

机译:在密封真空管中对III-V半导体纳米晶体的发达的Ullmann反应

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Group III-V (13-15, III = Ga, In, and V = P, As) semiconductor nanocrystals were effectively obtained via a developed Ullmann reaction route through the reactions of preformed nanoscale metallic indium or commercial gallium with triphenylphosphine (PPh3) and triphenylarsine (AsPh3) in sealed vacuum quartz tubes under moderate conditions at 320-400 degrees C for 8-24 h. The developed synthetic strategy in sealed vacuum tubes extends the synthesis of III-V semiconductor materials, and the air-stable PPh3 and AsPh3 with low toxicity provide good alternative pnicogen precursors for the synthesis of III-V nanocrystals. The analysis of XRD, ED and HRTEM established the production of one-dimensional (1D) metastable wurtzite (W) InP, InAs and GaP nanostructures in the zinc blende (ZB) products. Further investigations showed that 1D W nanostructures resulted from kinetic effects under the moderate synthetic conditions employed and the steric effect of PPh3 and AsPh3, and that the tendency for the synthesis of III-V nanocrystals was in the orders of IIIP > IIIAs and GaV > InV on the basis of experiments and thermodynamic calculations. Meanwhile, the microstructures and growth mechanism of the III-V nanocrystals were investigated.
机译:通过预先形成的纳米级金属铟或市售镓与三苯基膦(PPh3)的反应,通过发达的Ullmann反应路线有效地获得了III-V族(13-15,III = Ga,In,V = P,As)半导体纳米晶体。将三苯基ar(AsPh3)放入密封的真空石英管中,在中等条件下于320-400摄氏度下放置8-24小时。在密封的真空管中开发的合成策略扩展了III-V半导体材料的合成,并且具有低毒性的空气稳定的PPh3和AsPh3为合成III-V纳米晶体提供了良好的替代Pnicogen前体。 XRD,ED和HRTEM的分析建立了锌共混物(ZB)产品中一维(1D)亚稳纤锌矿(W)InP,InAs和GaP纳米结构的生产。进一步的研究表明,一维纳米纳米结构是由适度合成条件下的动力学效应以及PPh3和AsPh3的空间效应引起的,III-V纳米晶体的合成趋势为IIIP> IIIAs和GaV> InV。根据实验和热力学计算。同时,研究了III-V族纳米晶体的微观结构和生长机理。

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