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首页> 外文期刊>Journal of Solid State Chemistry >In situ plasmonic Au nanoparticle anchored nickel ferrite: An efficient plasmonic photocatalyst for fluorescein-sensitized hydrogen evolution under visible light irradiation
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In situ plasmonic Au nanoparticle anchored nickel ferrite: An efficient plasmonic photocatalyst for fluorescein-sensitized hydrogen evolution under visible light irradiation

机译:原位等离子体Au纳米粒子锚定镍铁氧体:可见光照射下荧光素敏化氢气进化的有效等离子体光催化剂

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Abstract Photocatalytic hydrogen generation is a considerable promising technology to decrease climate change effect of CO2 and to solve the increasing global demand for clean energy. Hydrogen generation driven by visible light still faces many challenges although great efforts have been made. Efficient charge separation plays an important role in solar-energy conversion by heterojunction photocatalysts. Herein we report that nickel ferrites covered by gold plasmonics form well-defined plasmonic photocatalysts for fluorescein-sensitized hydrogen production under visible-light irradiation with largely enhanced photoactivity due to fast separation of photogenerated electron-hole pairs. The optimal Au/NiFe2O4 plasmonic photocatalysts with AuNP loading of 1.5wt% shows the hydrogen production rate of 0.256mmolg?1 h?1 via localized surface plasmon resonance effect of AuNPs. Fluorescein was acted as photosensitizer to extend the visible-light absorption of Au/NiFe2O4 plasmonic photocatalysts and enhance photocatalytic hydrogen generation efficiency under visible-light irradiation. The optimum rate for hydrogen generation reached 3.162mmolg?1 h?1 and the rate is about 60-fold and 12-fold higher than that of pure NiFe2O4 and 1.5wt% Au/NiFe2O4 plasmonic photocatalysts, respectively. Graphical abstract The fluorescein-sensitized Au/NiFe2O4 photocatalytic systems were successfully investigated, and it exhibited a significant visible-light-driven photoactivity for hydrogen production. Display Omitted Highlights ? Novel Au/NiFe2O4 nanocomposites were successfully prepared and characterized. ? Au/NiFe2O4 nanocomposites have well-defined interfacial interaction. ?
机译:<![cdata [ 抽象 光催化氢生成是一个可观的有望的技术,可降低CO 2 并解决全球对清洁能源需求的增加。虽然已经进行了巨大努力,但是由可见光驱动的氢气仍然面临着许多挑战。高效电荷分离在Solor-Enduction Photocatalysts中起着重要作用。在这里,我们报告了金血浆覆盖的镍铁氧体,在可见光照射下形成荧光素敏化氢气的明确定义的等离子体光催化剂,由于光生电的电子 - 空穴对的快速分离,具有大量增强的光度。最佳AU / NiFe 2 O 4 等离子体光催化剂,具有1.5 WT%显示0.256 Mmol G ?1 h ?1 通过局部表面等离子体共振效果AUNP。荧光素被充当光敏剂,以延长Au / nife的可见光吸收 2 o 4 可见光辐照下等增强光催化氢气发电效率。氢收到的最佳速率达到3.162 mmol g 1 h ?1 ,比纯nife的速度大约60倍,12倍 2 O 4 和1.5 WT%AU / nife 2 o 4 等离子体光催化剂。 < / ce:abstract-sec> 图形抽象 荧光素敏感的au / nife 2 O 4 光催化系统成功研究,它表现出显着的可见光驱动的PHO氢气产生的分娩。 显示省略 突出显示 新颖AU / NiFe 2 O 4 纳米复合材料已成功准备和特征。 au / nife 2 o 4 纳米复合材料很好 - 定义的界面交互。

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