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Tailoring nanomaterial products through electrode material and oxygen partial pressure in a mini-arc plasma reactor

机译:在微型电弧等离子体反应器中通过电极材料和氧分压定制纳米材料产品

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摘要

Nanomaterials with controllable morphology and composition are synthesized by a simple one-step vapor condensation process using a mini-arc plasma source. Through systematic investigation of mini-arc reactor parameters, the roles of carrier gas, electrode material, and precursor on producing diverse nanomaterial products are revealed. Desired nanomaterial products, including tungsten oxide nanoparticles (NPs), tungsten oxide nanorods (NRs), tungsten oxide and tin oxide NP mixtures and pure tin dioxide NPs can thus be obtained by tailoring reaction conditions. The amount of oxygen in the reactor is critical to determining the final nanomaterial product. Without any precursor material present, a lower level of oxygen in the reactor favors the production of W18O49 NRs with tungsten as cathode, while a high level of oxygen produces more round WO3 NPs. With the presence of a precursor material, amorphous particles are favored with a high ratio of argon:oxygen. Oxygen is also found to affect tin oxide crystallization from its amorphous phase in the thermal annealing. Results from this study can be used for guiding gas phase nanomaterial synthesis in the future.
机译:具有可控形态和组成的纳米材料是通过使用微型电弧等离子体源通过简单的一步气相冷凝过程合成的。通过对微弧反应器参数的系统研究,揭示了载气,电极材料和前体在生产各种纳米材料产品中的作用。因此,可以通过调整反应条件来获得所需的纳米材料产品,包括氧化钨纳米颗粒(NPs),氧化钨纳米棒(NRs),氧化钨和氧化锡NP混合物以及纯二氧化锡NPs。反应器中的氧气量对于确定最终的纳米材料产品至关重要。在不存在任何前体材料的情况下,反应器中较低的氧气含量有利于以钨为阴极的W 18 O 49 NR的生产,而较高的氧气含量会产生更多的圆形的WO 3 NP。在存在前驱物材料的情况下,优选使用高比例的氩气:氧气的无定形颗粒。在热退火中,还发现氧气会影响氧化锡从非晶态的结晶。这项研究的结果可用于指导气相纳米材料的合成。

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