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Cathode electrodeposition and characterization of Ru nanoparticles doped a-CN_x:H composite films

机译:掺杂Ru纳米粒子的a-CN_x:H复合薄膜的阴极电沉积及表征

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摘要

Well-dispersed and stable Ru nanocrystalline particles with diameter in the range of 2-4 nm embedded in the amorphous carbon nitride matrix were synthesized on single crystal silicon (100) substrate by cathode electrochemical deposition using acetonitrile and Ru_3(CO)_(12) as carbon source and dopant, respectively. The results obtained from high-resolution transmission electron microscopy showed that the Ru nanoparticles were presented in the form of hexagonal Ru crystal structure with preferred orientation of (101). X-ray photoelectron spectroscopy and Fourier transform infrared spectroscopy confirmed that the as-obtained films are composed of C, N, Ru and H. Raman spectroscopy indicated that the films contained tetrahedral (sp3) and trigonal (sp2) bonding structures. After doping Ru into the amorphous carbon nitride matrix, the conductivity of the composite films is commendably enhanced and the cyclic voltammograms tests show evident oxidation and visible reduction peaks of Ru, also indicating the presence of Ru immobile phase in the amorphous carbon matrix.
机译:通过乙腈和Ru_3(CO)_(12)的阴极电化学沉积,在单晶硅(100)衬底上合成了埋入无定形氮化碳基质中的直径在2-4 nm范围内的分散良好且稳定的Ru纳米晶体颗粒。分别作为碳源和掺杂剂。从高分辨率透射电子显微镜获得的结果表明,Ru纳米颗粒以六方Ru晶体结构的形式呈现,其取向优选为(101)。 X射线光电子能谱和傅立叶变换红外光谱证实所获得的膜由C,N,Ru和H组成。拉曼光谱表明膜包含四面体(sp3)和三角(sp2)键合结构。将Ru掺杂到非晶碳氮化物基质中后,复合膜的导电性得到了可观的提高,循环伏安图测试显示Ru出现了明显的氧化峰和可见的还原峰,这也表明Ru固定相存在于非晶碳基质中。

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