Department of Materials Science and NanoEngineering, Rice University, Houston, TX, 77005, USA.
Chemicobiology and Functional Materials Institute, Nanjing University of Science and Technology, Nanjing, 210094, China.
Adv Mater. 2019 Mar;31(12):e1805778. doi: 10.1002/adma.201805778. Epub 2019 Jan 27.
Carbon doping can induce unique and interesting physical properties in hexagonal boron nitride (h-BN). Typically, isolated carbon atoms are doped into h-BN. Herein, however, the insertion of nanometer-scale graphene quantum dots (GQDs) is demonstrated as whole units into h-BN sheets to form h-CBN. The h-CBN is prepared by using GQDs as seed nucleations for the epitaxial growth of h-BN along the edges of GQDs without the assistance of metal catalysts. The resulting h-CBN sheets possess a uniform distrubution of GQDs in plane and a high porosity macroscopically. The h-CBN tends to form in small triangular sheets which suggests an enhanced crystallinity compared to the h-BN synthesized under the same conditions without GQDs. An enhanced ferromagnetism in the h-CBN emerges due to the spin polarization and charge asymmetry resulting from the high density of CN and CB bonds at the boundary between the GQDs and the h-BN domains. The saturation magnetic moment of h-CBN reaches 0.033 emu g at 300 K, which is three times that of as-prepared single carbon-doped h-BN.
碳掺杂可以在六方氮化硼(h-BN)中诱导出独特而有趣的物理性质。通常,孤立的碳原子被掺杂到 h-BN 中。然而,本文展示了将纳米级石墨烯量子点(GQDs)作为整体单元插入 h-BN 片层中以形成 h-CBN。h-CBN 是通过使用 GQDs 作为 h-BN 在 GQDs 边缘沿外延生长的晶种核来制备的,而无需金属催化剂的辅助。得到的 h-CBN 片层在平面内具有 GQDs 的均匀分布和宏观上的高孔隙率。h-CBN 倾向于形成小的三角形片层,这表明与在相同条件下没有 GQDs 合成的 h-BN 相比,结晶度得到了提高。由于 GQDs 和 h-BN 畴之间边界处 CN 和 CB 键的高密度导致自旋极化和电荷不对称,h-CBN 中出现了增强的铁磁性。h-CBN 的饱和磁矩在 300 K 时达到 0.033 emu g,是制备的单碳掺杂 h-BN 的三倍。