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Modification of hexagonal boron nitride by thermal treatment

机译:热处理改造六边形氮化物

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The catalytic activity of hexagonal boron nitride (hBN) is not yet well understood, but it seems to be related to hBN hydroxylated sites. A good understanding of those sites and how they are produced is a key step to reveal the true nature of hBN catalytic activity. Here, we report a set of thermal treatments to produce a diversity of hydroxylated sites, as well as a method to remove the boric acid produced by hBN decomposition. We found that some of the boric acid dehydrates on the surface of hBN to produce a borated hBN (hBNO) characterized by an FTIR peat at 1090 cm(-1) and an XRD shift due to the variation in the planar distance. We also showed that when characterizing the thermal treated hBN, the storage of the sample changed the borate's hydration degree and modified both the XRD pattern and the FTIR spectrum. When stored in a humid environment, boric acid peaks are visible, but they are not present if samples are stored in a dry place. The methods established here are a solid basis for the manufacture, purification and characterization of hBN by thermal treatments, showing how the process can be designed to generate various functional groups on its surface.
机译:六方氮化硼(hBN)的催化活性尚不清楚,但它似乎与hBN羟基化位点有关。充分了解这些位点及其产生方式是揭示hBN催化活性真实本质的关键步骤。在这里,我们报告了一组热处理以产生各种羟基化位点,以及一种去除hBN分解产生的硼酸的方法。我们发现,一些硼酸在hBN表面脱水生成硼化hBN(hBNO),其特征是在1090 cm(-1)处的FTIR泥炭和由于平面距离的变化而产生的XRD位移。我们还发现,在表征热处理的hBN时,样品的储存改变了硼酸盐的水合程度,并改变了XRD图谱和FTIR光谱。当储存在潮湿环境中时,硼酸峰是可见的,但如果样品储存在干燥的地方,硼酸峰就不存在。本文建立的方法为通过热处理制备、纯化和表征hBN奠定了坚实的基础,展示了如何设计该工艺以在其表面生成各种官能团。

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