首页> 外文期刊>Applied Surface Science >Fabrication of a magnetically separable and dual Z-scheme PANI/Ag_3PO_4/NiFe_2O_4 composite with enhanced visible-light photocatalytic activity for organic pollutant elimination
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Fabrication of a magnetically separable and dual Z-scheme PANI/Ag_3PO_4/NiFe_2O_4 composite with enhanced visible-light photocatalytic activity for organic pollutant elimination

机译:磁性可分离的Z方案双PANI / Ag_3PO_4 / NiFe_2O_4复合材料的制备,具有增强的可见光光催化活性,可消除有机污染物

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A novel polyaniline/silver phosphateickel ferrate (PANI/Ag3PO4/NiFe2O4) magnetic photocatalyst has been successfully fabricated by a precipitation-hydrothermal method. The composition, morphological structure and optical property of the as-prepared samples are characterized. All the PANI/Ag3PO4/NiFe2O4 composites with different PANI content show enhanced visible-light photocatalytic activity for rhodamine B (RhB) and methyl orange (MO) dyes degradation compared to pure Ag3PO4, Ag3PO4/NiFe2O4 and Ag3PO4/PANI composites. The highest degradation efficiency for RhB and MO via 3%-PANI/Ag3PO4/NiFe2O4 composite photocatalyst separately reach 100% and 94.97%, and their degradation rate (k) are close to 12.1 and 15.4 times faster than those of pure Ag3PO4, respectively. Meanwhile, the PANI/Ag3PO4/NiFe2O4 composite displays excellent photocatalytic performance on the degradation of colorless organic pollutants (tetracycline hydrochloride, nitrobenzene and bisphenol A) under the visible light irradiation. The PANI/Ag3PO4/NiFe2O4 catalyst exhibits a superior stability than pure Ag3PO4 after three consecutive reuses. The improved photocatalytic activity and stability of PANI/Ag3PO4/NiFe2O4 ternary composite can be attributed to the extended absorption capability in the visible light region as well as the high-efficiency separation of electron-hole pairs. Particularly, the construction of double Z-scheme heterojunctions in the ternary composite can facilitate the rapid transfer of electrons on the surface of Ag3PO4, thus inhibit its photocorrosion. This study provides an idea for enhancing the anti-photocorrosion and photocatalytic activity of photosensitive semiconductors.
机译:采用沉淀-水热法成功制备了新型聚苯胺/磷酸银/高铁酸镍(PANI / Ag3PO4 / NiFe2O4)磁性光催化剂。表征了所制备样品的组成,形态结构和光学性质。与纯Ag3PO4,Ag3PO4 / NiFe2O4和Ag3PO4 / PANI复合材料相比,具有不同PANI含量的所有PANI / Ag3PO4 / NiFe2O4复合材料对罗丹明B(RhB)和甲基橙(MO)染料的降解均具有增强的可见光光催化活性。通过3%-PANI / Ag3PO4 / NiFe2O4复合光催化剂对RhB和MO的最高降解效率分别达到100%和94.97%,其降解率(k)分别比纯Ag3PO4快近12.1和15.4倍。同时,PANI / Ag3PO4 / NiFe2O4复合材料在可见光照射下对无色有机污染物(盐酸四环素,硝基苯和双酚A)的降解表现出优异的光催化性能。在连续三次重复使用后,PANI / Ag3PO4 / NiFe2O4催化剂显示出比纯Ag3PO4更高的稳定性。 PANI / Ag3PO4 / NiFe2O4三元复合材料的光催化活性和稳定性的提高可归因于可见光区域扩展的吸收能力以及电子-空穴对的高效分离。特别地,在三元复合物中构造双Z-方案异质结可以促进电子在Ag 3 PO 4表面上的快速转移,从而抑制其光腐蚀。这项研究为增强光敏半导体的抗光腐蚀和光催化活性提供了一个思路。

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