Univ. Lyon, INSA-Lyon, MATEIS, UMR CNRS 5510, 7 Avenue Jean Capelle, F-69621, Villeurbanne, France. Univ. Lyon, Université Lyon 1, LMI, UMR CNRS 5615, 6 rue Victor Grignard, F-69622, Villeurbanne, France.
Nanotechnology. 2019 Jan 18;30(3):035604. doi: 10.1088/1361-6528/aaebb4.
Hexagonal boron nitride nanosheets (BNNSs) are promising 2D materials due to their exceptional chemical and thermal stabilities together with their electrical insulation properties. A combined synthesis method involving the polymer-derived ceramics (PDCs) route and the spark plasma sintering (SPS) process is proposed, leading to well-crystallized and pure layered h-BN crystals, prone to be exfoliated into large BNNSs. Here we focus more specifically on the influence of two key parameters of the process to be optimized: the LiN concentration (0-10 wt%) and the SPS temperature (1200 °C-1950 °C). The presence of LiN, added as crystal promoter in the pre-ceramic powder, significantly improves the crystallinity level of the product, as evidenced by XRD, SEM and Raman spectrometry. SPS temperature strongly modifies the size of the resulting h-BN flakes. The influence of SPS temperature on both purity and crystallinity is studied using cathodoluminescence. h-BN flakes larger than 200 μm (average flake area) are obtained. Few-layered BNNSs are successfully isolated, through exfoliation process.
六方氮化硼纳米片(h-BNNSs)是一种很有前途的二维材料,因为它们具有出色的化学和热稳定性,以及电绝缘性能。提出了一种涉及聚合物衍生陶瓷(PDCs)路线和火花等离子烧结(SPS)工艺的组合合成方法,得到了结晶良好且纯净的层状 h-BN 晶体,易于剥离成大的 BNNSs。在这里,我们更关注于过程中两个需要优化的关键参数的影响:LiN 浓度(0-10wt%)和 SPS 温度(1200°C-1950°C)。LiN 的存在,作为预制陶瓷粉末中的晶体促进剂,显著提高了产物的结晶度水平,这可以通过 XRD、SEM 和拉曼光谱得到证明。SPS 温度强烈改变了所得 h-BN 薄片的尺寸。使用阴极发光研究了 SPS 温度对纯度和结晶度的影响。获得了大于 200μm(平均薄片面积)的 h-BN 薄片。通过剥离工艺成功地分离出了少层 BNNSs。