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首页> 外文期刊>RSC Advances >Hollow Cu2O microspheres with two active {111} and {110} facets for highly selective adsorption and photodegradation of anionic dye
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Hollow Cu2O microspheres with two active {111} and {110} facets for highly selective adsorption and photodegradation of anionic dye

机译:具有两个活性{111}和{110}面的空心Cu2O微球,用于阴离子染料的高度选择性吸附和光降解

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Hollow Cu2O microspheres (0.7 to 4 mm in diameter) with two active {111} and {110} facets have been prepared in water/ethylene glycol (H2O/EG) solution via a fast hydrothermal route in only 1 h. Due to the dangling "Cu" atoms in the highly active {111} and {110} facets, the microspheres demonstrate preferential selective adsorption and photodegradation for negatively charged methyl orange (MO), comparing to cationic rhodamine B (RhB) and neutral phenol. The 0.7 mu m hollow Cu2O microspheres show the best adsorption capacity and photodegradation performance for MO removal: 49% MO can be adsorbed in 60 min and 99.8% MO can be fully removed under visible light illumination in 80 min, owing to the two active {110} and {111} facets and hollow structure. To exactly evaluate the photocatalytic efficiency, a new methodology is proposed by deducting the adsorption effect. The results show that in spite of 99.2% MO is removed from the solution under visible light illumination in 60 min, 14% MO is still adsorbed on the catalyst, which can be totally removed under further 20 min illumination. Our synthesis strategy presents a new opportunity for the preparation of hollow structures with high active facets. And the proposed accurate evaluation methodology may be extended to other photocatalysts with high adsorption capability for organic pollutants.
机译:通过仅需1小时的快速水热法,就可以在水/乙二醇(H2O / EG)溶液中制备具有两个活性{111}和{110}面的空心Cu2O微球(直径为0.7至4 mm)。由于在高活性{111}和{110}面中悬挂的“ Cu”原子,与阳离子若丹明B(RhB)和中性酚相比,微球对负电荷的甲基橙(MO)表现出优先的选择性吸附和光降解作用。 0.7微米的中空Cu2O微球具有最佳的吸附能力和光降解性能,可去除MO:60分钟内49%的MO可被吸附,而80分钟可见光下80%的Mo可被99.8%的MO完全去除,这是由于两种活性物质{ 110}和{111}小面和空心结构。为了准确评估光催化效率,提出了一种通过扣除吸附效应的新方法。结果表明,尽管在60分钟的可见光照射下从溶液中除去了99.2%的MO,但仍有14%的MO吸附在催化剂上,在进一步照射20分钟后可将其全部除去。我们的合成策略为制备具有高活性小面的空心结构提供了新的机会。所提出的精确评估方法可以扩展到对有机污染物具有高吸附能力的其他光催化剂。

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