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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Enhanced H-2 production from hydrolysis of sodium borohydride using Co3O4 nanoparticles assembled coatings prepared by pulsed laser deposition
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Enhanced H-2 production from hydrolysis of sodium borohydride using Co3O4 nanoparticles assembled coatings prepared by pulsed laser deposition

机译:使用脉冲激光沉积制备的Co3O4纳米颗粒组装的涂层,增强了硼氢化钠水解产生的H-2

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摘要

Nanocatalysts, in the form of nanoparticles assembled coatings (NPACs) of Co3O4, were synthesized by pulsed laser deposition (PLD) with optimized parameters. Phase explosion phenomena occurring at high laser fluences produce nanoparticles (NPs) with an average size of similar to 5 nm having narrow size distribution (3-10 nm) and low degree of agglomeration, which are randomly arranged in the form of coating on the substrate surface. In comparison with chemically synthesized Co3O4 crystalline powder, the NPACs deposited by PLD showed significantly higher catalytic activity for H-2 generation by hydrolysis of NaBH4. Maximum H-2 generation rate obtained by NPACs (5010 ml min(-1) g(cat)(-1)) is about 5 times higher than that produced by Co3O4 powder (1000 ml min(-1) g(cat)(-1)), which is mainly attributed to high surface area and large number of active sites provided by the Co3O4 NPs in the coating owing to their size and shape. By varying the O-2 pressure during PLD, two different cobalt oxide phases, namely Co3O4 and CoO, were formed in NPACs and found that Co3O4 phase is more active for hydrolysis than CoO phase with lower oxidation number. The morphology and crystallinity of Co3O4 NPACs were tuned by varying the laser fluence and substrate temperature respectively, and their effect on H-2 generation rate was studied. The results showed that the NPs with mixed amorphous-nanocrystalline phase on the surface act as active sites for favorable interaction and NaBH4 conversion. (C) 2016 Published by Elsevier B.V.
机译:通过具有优化参数的脉冲激光沉积(PLD)合成了Co3O4的纳米颗粒组装涂层(NPAC)形式的纳米催化剂。在高激光通量下发生的相爆炸现象会产生平均粒径类似于5 nm的纳米颗粒(NPs),具有窄的粒径分布(3-10 nm)和低聚集度,这些纳米颗粒以涂层形式随机排列在基材上表面。与化学合成的Co3O4结晶粉末相比,PLD沉积的NPAC显示出通过NaBH4水解产生H-2的明显更高的催化活性。 NPAC(5010 ml min(-1)g(cat)(-1))可获得的最大H-2生成率比Co3O4粉末(1000 ml min(-1)g(cat)( -1)),这主要归因于Co3O4 NP的尺寸和形状,其表面积大且涂层中Co3O4 NP提供了大量的活性位。通过改变PLD期间的O-2压力,在NPAC中形成了两种不同的氧化钴相,即Co3O4和CoO,发现Co3O4相比具有较低氧化数的CoO相具有更高的水解活性。分别通过改变激光通量和衬底温度来调节Co3O4 NPAC的形貌和结晶度,并研究其对H-2生成速率的影响。结果表明,表面上具有混合的非晶-纳米晶相的NP充当了有利的相互作用和NaBH4转化的活性位点。 (C)2016由Elsevier B.V.发布

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