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Improving Formation Conditions and Properties of hBN Nanosheets Through BaF2-assisted Polymer Derived Ceramics (PDCs) Technique

机译:通过BAF2辅助聚合物衍生陶瓷(PDCS)技术改善HBN纳米片的形成条件和性质

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摘要

Hexagonal boron nitrite (hBN) is an attractive material for many applications such as in electronics as a complement to graphene, in anti-oxidation coatings, light emitters, etc. However, the synthesis of high-quality hBN at cost-effective conditions is still a great challenge. Thus, this work reports on the synthesis of large-area and crystalline hBN nanosheets via the modified polymer derived ceramics (PDCs) process. The addition of both the BaF2 and Li3N, as melting-point reduction and crystallization agents, respectively, led to the production of hBN powders with excellent physicochemical properties at relatively low temperatures and atmospheric pressure conditions. For instance, XRD, Raman, and XPS data revealed improved crystallinity and quality at a decreased formation temperature of 1200 °C upon the addition of 5 wt% of BaF2. Moreover, morphological determination illustrated the formation of multi-layered nanocrystalline and well-defined shaped hBN powders with crystal sizes of 2.74−8.41 ± 0.71 µm in diameter. Despite the compromised thermal stability, as shown by the ease of oxidation at high temperatures, this work paves way for the production of large-scale and high-quality hBN crystals at a relatively low temperature and atmospheric pressure conditions.
机译:六方氮化硼(六方氮化硼)对于许多应用,如电子,以补充石墨烯,在抗氧化涂层,光发射器等。然而,高品质的hBN的成本效益的条件下合成仍然是有吸引力的材料一个巨大的挑战。因此,经由该改性聚合物在大面积和结晶的hBN纳米片的合成这个工作报告衍生陶瓷(PDC的)过程。在添加两种氟化钡和氮化锂的,如熔点降低,结晶剂,分别导致生产六方氮化硼粉末在相对低的温度和大气压力条件下具有优异的物理化学性质。例如,XRD,拉曼光谱,和XPS数据显示改进的结晶性和质量在当加入氟化钡的5重量%降低1200℃的地层温度。此外,形态测定所示多层纳米晶体和良好限定的形状的六方氮化硼粉末与2.74-8.41±0.71微米直径的晶体尺寸的形成。尽管损害热稳定性,如通过易于在高温下氧化的,这项工作铺平了在相对低的温度和大气压力条件下生产大型和高品质的hBN晶体的方式。

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