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首页> 外文期刊>Journal of Molecular Liquids >Highly efficient visible-light driven photocatalytic hydrogen evolution over Er3+:YAIO(3)/Ta2O5/rGO/MoSe2 nanocomposite
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Highly efficient visible-light driven photocatalytic hydrogen evolution over Er3+:YAIO(3)/Ta2O5/rGO/MoSe2 nanocomposite

机译:高效的可见光驱动光催化氢气换氢eR3 +:Yaio(3)/ Ta2O5 / Rgo / MOSE2纳米复合材料

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Here, a novel coated composite, Er3+:YAIO(3)/Ta2O5/rGO/MoSe2, was successfully prepared by sol-hydrothermal and calcination methods, in which the MoSe2 and reduced graphene oxide (rGO) hybrids as co-catalyst were used to act as the electron collector and active reaction sites. Er3+:YAIO(3), MoSe2/rGO, Er3+:YAIO(3)/Ta2O5 and Er3+:YAIO(3)/Ta2O5/rGO/MoSe2 were all characterized by X-ray diffractometer (XRD), scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDX), X-ray photoelectron spectroscopy (XPS), Raman spectrum, UV-vis diffuse reflectance spectra (DRS) and transmission electron microscopy (TEM). UV-vis absorption and photoluminescence (PL) spectra of Er3+ :YAIO(3) were also measured. The photocatalytic hydrogen production activity of Er3+:YAIO(3)/Ta2O5/rGO/MoSe2 was examined under visible-light irradiation. The main influence factors such as initial solution pH and mass ratio of Ta2O5 and MoSe2/rGO on visible-light photocatalytic hydrogen production activity of Er3+:YAIO(3)/Ta2O5/rGO/MoSe2 were discussed in detail. The results showed that the coated composite (Er3+:YAIO(3)/Ta2O5/rGO/MoSe2) with 99.25:0.75 mass ratio of Ta2O5 and MoSe2/rGO in methanol aqueous solution at pH = 6.00 could display the highest photocatalytic hydrogen production activity. Furthermore, a high level of photocatalytic activity can be still maintained within five cycles under the same conditions. It implies that the novel coated composite, Er3+:YAIO(3)/Ta2O5/rGO/MoSe2, may be a promising photocatalyst utilizing solar energy for hydrogen production. (C) 2018 Elsevier B.V. All rights reserved.
机译:这里,通过溶胶 - 水热量和煅烧方法成功地制备了一种新型涂覆的复合材料ER3 +:YaiO(3)/ Ta2O5 / Rgo / MOSE2,其中MOSE2和氧化石墨烯(RGO)杂种用作助催化剂充当电子收集器和活性反应位点。 ER3 +:Yaio(3),MOSE2 / RGO,ER3 +:Yaio(3)/ TA2O5和ER3 +:Yaio(3)/ Ta2O5 / Rgo / MOSE2全部由X射线衍射仪(XRD),扫描电子显微镜(SEM)为特征,能量色散X射线光谱(EDX),X射线光电子能谱(XPS),拉曼光谱,紫外可见漫反射光谱(DRS)和透射电子显微镜(TEM)。还测量了ER3 +:YaiO(3)的UV-Vis吸收和光致发光(PL)光谱。在可见光照射下检查ER3 +:YaiO(3)/ Ta2O5 / Rgo / MOSE2的光催化氢气产生活性。详细讨论了ER3 +:YaiO(3)/ Ta2O5 / Rgo / MOSE2的初始溶液pH和Ta2O5和MOSE2 / RGO的初始溶液pH和MOSE2 / RGO质量比的主要影响因素。结果表明,涂​​覆的复合物(ER3 +:YaiO(3)/ Ta2O5 / Rgo / MOSE2),其在pH = 6.00的甲醇水溶液中的Ta2O5和Mose2 / Rgo的Ta2O5和Mose2 / Rgo的质量比可以显示出最高的光催化氢气产生活性。此外,在相同条件下,高水平的光催化活性可以在五个循环中保持在五个循环中。它意味着新型涂层复合材料,ER3 +:YaiO(3)/ Ta2O5 / Rgo / MOSE2可以是利用太阳能进行氢气产生的有前途的光催化剂。 (c)2018年elestvier b.v.保留所有权利。

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