| Literature DB >> 26395314 |
Yanan Jiang1, Baodan Liu1, Lini Yang2, Bing Yang1, Xiaoyuan Liu1, Lusheng Liu1, Christian Weimer3, Xin Jiang1.
Abstract
Ni5TiO7 nanowires with controllable sizes are synthesized using PEO method combined with impregnation and annealing at 1050(o)C in air, with adjustment of different concentrations of impregnating solution to control the dimension of nanowires. The resulting nanowires are characterized in details using X-ray diffraction, scanning electron microscopy, transmission electron microscopy and energy dispersive X-ray analysis. In addition, the CO catalytic oxidation performance of the Ni5TiO7 nanowires is investigated using a fixed-bed quartz tubular reactor and an on-line gas chromatography system, indicating that the activity of this catalytic system for CO oxidation is a strong dependency upon the nanocrystal size.When the size of the Ni5TiO7 nanowires is induced from 4 μm to 50 nm, the corresponding maximum conversion temperature is lowered by ~100 (o)C.Entities:
Year: 2015 PMID: 26395314 PMCID: PMC4585801 DOI: 10.1038/srep14330
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1XRD patterns of PEO coating and Ni5TiO7 layer after annealing at 1050 °C for 1 hour; Standard XRD data of Ni5TiO7, anatase TiO2 and rutile TiO2 are also shown as references.
Figure 2(a,b) SEM surface and cross-sectional morphologies of PEO coating; (d,e) SEM surface and cross-section morphologies of Ni5TiO7 grown on PEO coating at 1050 oC; (c,f) EDS results of PEO coating and Ni5TiO7, respectively.
Figure 3(a) representative TEM image of Ni5TiO7 nanowires by annealing PEO coating at 1050 oC; (b) EDS spectrum recorded from the nanowire; (c) SAED pattern taken from Ni5TiO7 nanowire and (d) its corresponding HRTEM image.
Figure 4SEM morphologies of Ni5TiO7 nanowires grown on PEO coating in different Ni(NO3)2 concentrations of impregnation solutions at 1050 oC: (a) without dipping; (b) 0.1 M; (c) 0.5M and (d) 2 M.
Figure 5(a) Temperature-dependent CO catalytic oxidation performance over Ni5TiO7 nanowires catalysts prepared in different concentrations of impregnating solution; (b) the long-term stability test of Ni5TiO7 nanowires at 440 oC
.
Figure 6(a) Representative TEM image of Ni5TiO7 nanowires after CO catalytic oxidation; (b) EDS spectrum recorded from the nanowire; (c) FFT pattern taken from Ni5TiO7 nanowire and (d) its corresponding HRTEM image.