材料科学
氢气储存
氮化硼
吸附
多孔性
透射电子显微镜
化学工程
无定形固体
硼
拉曼光谱
氢
三聚氰胺
选区衍射
比表面积
纳米技术
结晶学
复合材料
吸附
化学
有机化学
催化作用
工程类
物理
合金
光学
作者
Qunhong Weng,Xuebin Wang,Chunyi Zhi,Yoshio Bando,Dmitri Golberg
出处
期刊:ACS Nano
[American Chemical Society]
日期:2013-01-10
卷期号:7 (2): 1558-1565
被引量:303
摘要
Layered boron nitrides (BNs) are usually viewed as excellent protective coatings and reinforcing materials due to their chemical inertness and high mechanical strength. However, the attention paid to their potential applications in gas sorption, especially in case of hydrogen, has obviously been insufficient. Herein, a novel BN material (i.e., porous microbelts), with the highest specific surface area ever reported for any BN system, up to 1488 m2 g–1, is obtained through one-step template-free reaction of a boron acid–melamine precursor with ammonia. Comprehensive high-resolution transmission electron microscopy, X-ray diffraction, and Raman characterizations all confirm that the obtained BN phase is partially disordered, shows an enlarged average spacing between adjacent (0002) layers (d0002 = 0.38 nm, compared to normal 0.33 nm for a bulk layered BN), and belongs to an intermediate state between hexagonal (h-BN) and amorphous (a-BN) phases. By changing the synthesis temperatures, the textures of obtained porous microbelts are adjustable. H2 sorption evaluations demonstrate that the materials exhibit high and reversible H2 uptake from 1.6 to 2.3 wt % at 77 K and at a relatively low pressure of 1 MPa.
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