School of Material Science and Engineering, Hebei University of Technology, Tianjin, People's Republic of China.
Nanotechnology. 2013 Apr 19;24(15):155603. doi: 10.1088/0957-4484/24/15/155603. Epub 2013 Mar 22.
We report on the synthesis of high-quality microporous/mesoporous BN material via a facile two-step approach. An extremely high surface area of 1687 m(2) g(-1) and a large pore volume of 0.99 cm(3) g(-1) have been observed in the synthesized BN porous whiskers. The formation of the porous structure was attributed to the group elimination of organic species in a BN precursor, melamine diborate molecular crystal. This elimination method maintained the ordered pore structure and numerous structural defects. The features including high surface area, pore volume and structural defects make the BN whiskers highly suitable for hydrogen storage and wastewater treatment applications. We demonstrate excellent hydrogen uptake capacity of the BN whiskers with high weight adsorption up to 5.6% at room temperature and at the relatively low pressure of 3 MPa. Furthermore, the BN whiskers also exhibit excellent adsorption capacity of methyl orange and copper ions, with the maximum removal capacity of 298.3 and 373 mg g(-1) at 298 K, respectively.
我们通过一种简便的两步法合成了高质量的微孔/介孔 BN 材料。所合成的 BN 多孔晶须具有极高的比表面积(1687 m²/g)和孔体积(0.99 cm³/g)。多孔结构的形成归因于 BN 前体——双硼酸三聚氰胺中的有机物种的基团消除。这种消除方法保持了有序的孔结构和大量的结构缺陷。BN 晶须具有高比表面积、孔体积和结构缺陷等特点,非常适合于氢气存储和废水处理应用。我们证明了 BN 晶须具有优异的储氢能力,在室温下和相对较低的 3 MPa 压力下,重量吸附率高达 5.6%。此外,BN 晶须对甲基橙和铜离子也具有优异的吸附能力,在 298 K 时,最大去除容量分别为 298.3 和 373 mg/g。