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首页> 外文期刊>Chemical engineering journal >InVO4 nanocrystal photocatalysts: Microwave-assisted synthesis and size-dependent activities of hydrogen production from water splitting under visible light
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InVO4 nanocrystal photocatalysts: Microwave-assisted synthesis and size-dependent activities of hydrogen production from water splitting under visible light

机译:InVO4纳米晶体光催化剂:微波辅助合成和可见光下水分解制氢产生的尺寸依赖的活性

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摘要

The efficiency of visible-light-driven oxide semiconductor photocatalysts for hydrogen production from water splitting has long been restricted by the large particle size. In this study, a simple and versatile microwave-assisted synthesis of lnVO4 nanocrystal photocatalysts is proposed. The as-prepared products possess high crystallinity and ultra-small size (20 nm) that has never been reported yet. The 20 nm-sized nanocrystal samples show reduced visible-light response and enlarged reductive energy compared with large-sized InVO4 samples. The hydrogen production rate of InVO4 nanocrystal photocatalysts is 14.16 uinol h~(-1) g~(-1) which is higher than that of large-sized lnVO4 microspheres (9 μmol h~(-1) g~(-1)). The model of size-dependent activities and the possible mechanism for the activity enhancement are also discussed by the band position calculation in this paper.
机译:长期以来,大粒径限制了可见光驱动的氧化物半导体光分解水制氢的效率。在这项研究中,提出了一种简单且通用的微波辅助合成lnVO4纳米晶体光催化剂。所制备的产品具有较高的结晶度和超小尺寸(20 nm),尚未见报道。与大型InVO4样品相比,尺寸为20 nm的纳米晶体样品显示出降低的可见光响应和更大的还原能。 InVO4纳米晶体光催化剂的产氢率为14.16 uinol h〜(-1)g〜(-1),高于大型lnVO4微球(9μmolh〜(-1)g〜(-1))。 。通过带位置计算,还讨论了大小相关活动的模型和活动增强的可能机制。

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