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Magnetically Separable Hollow MnFe_2O_4-Polyaniline Composite Nanofibers: Highly Enhanced Visible Light Photodegradation of Methyl Orange

机译:磁可分离的空心MnFe_2O_4-聚苯胺复合纳米纤维:甲基橙的高度增强的可见光光降解

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摘要

Hollow manganese ferrite-polyaniline composite nanofibers (MnFe2O4-PANI) as a magnetically separable photocatalyst were synthesized by an electrospinning method, subsequent thermal treatment in air, and the polymerization of PANI on the surface of MnFe2O4. Heterostructured hollow core-shell MnFe2O4-PANI nanofibers offer numerous interconnected network with abundant mesoporosity and macroporosity. Heterojunction with hollow core-shell structure between MnFe2O4 and PANI makes it easier to absorb visible light and to induce charge separation, which results in a remarkable photodegradation of methyl orange (MO) dye under visible-light irradiation. Magnetically separable hollow MnFe2O4-PANI photocatalyst was superior in recovery efficiency after three cycling runs under visible-light driven irradiation.
机译:通过电纺丝法,随后在空气中进行热处理以及PANI在MnFe2O4表面聚合的方法,合成了空心锰铁氧体-聚苯胺复合纳米纤维(MnFe2O4-PANI)作为可磁分离的光催化剂。异质结构的空心核-壳MnFe2O4-PANI纳米纤维提供了许多相互连接的网络,并具有丰富的中孔性和大孔性。 MnFe2O4和PANI之间具有空心核-壳结构的异质结使它更易于吸收可见光并引起电荷分离,这导致了在可见光照射下甲基橙(MO)染料的显着光降解。在可见光驱动的辐射下进行三个循环后,可磁分离的空心MnFe2O4-PANI光催化剂的回收效率更高。

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