College of Chemistry and Chemical Engineering, Inner Mongolia University , Hohhot 010021, P.R. China.
Inner Mongolia Key Lab of Nanoscience and Nanotechnology, Inner Mongolia University , Hohhot 010021, P.R. China.
ACS Appl Mater Interfaces. 2016 Jul 27;8(29):18770-87. doi: 10.1021/acsami.6b03747. Epub 2016 Jul 13.
We constructed a series of two-dimensional (2D) layered mesoporous mono- and binary-transition-metal nitride/graphene nanocomposites (TMN/G, TM = Ti, Cr, W, Mo, TiCr, TiW, and TiMo) via an efficient and versatile nanocasting strategy for the first time. The 2D layered mesoporous TMN/G is constituted of small TMN nanoparticles composited with graphene nanosheets and has a large surface area with high porosity. Through decoration with well-dispersed Pt nanoparticles, 2D layered mesoporous Pt/TMN/G catalysts can be obtained that display excellent catalytic activity and stability for methanol electro-oxidation reactions (MOR) and oxygen reduction reactions (ORR) in both acidic and alkaline media. The 2D layered mesoporous binary-Pt/TMN/G catalysts possess catalytic activity superior to that of mono-Pt/TMN/G, graphene free Pt/TMN, Pt/G, and Pt/C catalysts. Encouragingly, the 2D layered mesoporous Pt/Ti0.5Cr0.5N/G catalyst exhibits the best electrocatalytic performance for both MOR and ORR. The outstanding electrocatalytic performance of the Pt/Ti0.5Cr0.5N/G catalyst is rooted in its large surface area, high porosity, strong interaction among Pt, Ti0.5Cr0.5N, and graphene, an excellent electron transfer property facilitated by N-doped graphene, and the small size of Pt and Ti0.5Cr0.5N nanocrystals. The outstanding catalytic performance provides the 2D layered mesoporous Pt/Ti0.5Cr0.5N/G catalyst with a wide range of application prospects in direct methanol fuel cells in both acidic and alkaline media. The synthetic method may be available for constructing other 2D layered mesoporous metal nitrides, carbides, and phosphides.
我们首次通过一种高效且通用的纳米铸造策略,构建了一系列二维(2D)层状介孔单原子和双原子过渡金属氮化物/石墨烯纳米复合材料(TMN/G,TM = Ti、Cr、W、Mo、TiCr、TiW 和 TiMo)。2D 层状介孔 TMN/G 由小的 TMN 纳米颗粒与石墨烯纳米片复合而成,具有大的比表面积和高的孔隙率。通过负载分散良好的 Pt 纳米颗粒,可以得到 2D 层状介孔 Pt/TMN/G 催化剂,该催化剂在酸性和碱性介质中对甲醇电氧化反应(MOR)和氧还原反应(ORR)均表现出优异的催化活性和稳定性。2D 层状介孔二元 Pt/TMN/G 催化剂具有优于单原子 Pt/TMN/G、无石墨烯的 Pt/TMN、Pt/G 和 Pt/C 催化剂的催化活性。令人鼓舞的是,2D 层状介孔 Pt/Ti0.5Cr0.5N/G 催化剂对 MOR 和 ORR 均表现出最佳的电催化性能。Pt/Ti0.5Cr0.5N/G 催化剂具有优异的电催化性能,这源于其大的比表面积、高的孔隙率、Pt、Ti0.5Cr0.5N 和石墨烯之间的强相互作用、N 掺杂石墨烯促进的优异电子转移性能以及 Pt 和 Ti0.5Cr0.5N 纳米晶的小尺寸。出色的催化性能使得 2D 层状介孔 Pt/Ti0.5Cr0.5N/G 催化剂在酸性和碱性介质中的直接甲醇燃料电池中具有广泛的应用前景。该合成方法可能适用于构建其他 2D 层状介孔金属氮化物、碳化物和磷化物。