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High Purity and Yield of Boron Nitride Nanotubes Using Amorphous Boron and a Nozzle-Type Reactor

机译:使用非晶态硼和喷嘴型反应器高纯度和高产率的氮化硼纳米管

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摘要

Enhancement of the production yield of boron nitride nanotubes (BNNTs) with high purity was achieved using an amorphous boron-based precursor and a nozzle-type reactor. Use of a mixture of amorphous boron and Fe decreases the milling time for the preparation of the precursor for BNNTs synthesis, as well as the Fe impurity contained in the B/Fe interdiffused precursor nanoparticles by using a simple purification process. We also explored a nozzle-type reactor that increased the production yield of BNNTs compared to a conventional flow-through reactor. By using a nozzle-type reactor with amorphous boron-based precursor, the weight of the BNNTs sample after annealing was increased as much as 2.5-times with much less impurities compared to the case for the flow-through reactor with the crystalline boron-based precursor. Under the same experimental conditions, the yield and quantity of BNNTs were estimated as much as ~70% and ~1.15 g/batch for the former, while they are ~54% and 0.78 g/batch for the latter.
机译:使用无定形的硼基前驱体和喷嘴型反应器可以提高高纯度氮化硼纳米管(BNNT)的产量。通过使用简单的纯化方法,使用非晶态硼和Fe的混合物可减少制备BNNTs合成前体的研磨时间,以及B / Fe互扩散前体纳米颗粒中所含的Fe杂质。我们还研究了一种喷嘴型反应器,与传统的流通式反应器相比,该方法可提高BNNT的产量。与具有结晶硼基的流通式反应器相比,通过使用具有非晶态硼基前驱物的喷嘴式反应器,退火后的BNNTs样品的重量增加了2.5倍,杂质少得多前体。在相同的实验条件下,估计前者的BNNTs的产量和数量分别高达〜70%和〜1.15 g /批,而后者的分别为〜54%和0.78 g /批。

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