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Synthesis of magnetically recyclable spinel ferrite (MFe2O4, M=Zn, Co, Mn) nanocrystals engineered by sol gel-hydrothermal technology: High catalytic performances for nitroarenes reduction

논문 개요

기관명, 저널명, ISSN, ISBN 으로 구성된 논문 개요 표입니다.
기관명 NDSL
저널명 Applied catalysis. B, Environmental
ISSN 0926-3373,1873-3883
ISBN

논문저자 및 소속기관 정보

저자, 소속기관, 출판인, 간행물 번호, 발행연도, 초록, 원문UR, 첨부파일 순으로 구성된 논문저자 및 소속기관 정보표입니다
저자(한글) Ibrahim, I.,Ali, I.O.,Salama, T.M.,Bahgat, A.A.,Mohamed, M.M.
저자(영문)
소속기관
소속기관(영문)
출판인
간행물 번호
발행연도 2016-01-01
초록 Highly stable and magnetically recoverable MFe 2 O 4 (M=Zn, Co, Mn) spinel ferrite nanoparticles; synthesized using sol gel-hydrothermal technology via utilizing polyvinyl alcohol surfactant, were proposed as heterogeneous catalysts for the reduction of nitroarenes. The morphological characteristics, structural exploration, surface, optical, vibrational and magnetic properties were performed using powder X-ray diffraction, high-resolution transmission electron microscopy, energy dispersive X-ray, N 2 sorptiometry, diffused UV-vis reflectance spectroscopy, FTIR, point of zero charge, vibrating sample magnetometer (VSM) and thermokinetic analysis via TGA technique. The results showed that MnFe 2 O 4 exhibited the best performance in the reduction of 4-nitrophenol (4-NP), 2,4,6 tri-nitrophenol (2,4,6-NP) and 4-nitroaniline (4-NA) and revealed 100% conversion into the corresponding amino derivatives in 270sec with rate constant equal 0.01061s -1 , 0.01134s -1 and 0.01355s -1 , respectively. The superiority of the catalytic reduction of MnFe 2 O 4 was due to increasing the pore radius and pore volume (6.75nm, 0.227cm 3 /g) values compared to other nanoferrites. The synthesized nanoferrites indicate independence of the activity on crystallite sizes due to the insignificant margin of change (from 6 to10nm). Conversely, decreasing the activity of ZnFe 2 O 4 was due to increasing the Zn 2+ ions size that induces an increase in lattice parameter values and thus increases the long-range electron transfer between Fe 2+ -Fe 3+ ions. The MnFe 2 O 4 catalyst that presented the highest saturation magnetization (135emu/g) indicated the highest reduction potential for 4-NA comparatively in the presence of NaBH 4 and the reduction reaction followed pseudo first-order kinetics. Increasing the reduction performance of 4-NA compared to other nitroaromatics on MnFe 2 O 4 was explained based on the formed intermediates, their reactivities, hydrophobicity and to point of zero charges. It has been explored that the reduction efficacy of 4-NP was enhanced on MnFe 2 O 4 with the addition of ammonium oxalate and benzoquinone where it was inferior following the addition of tertiary-butyl alcohol. More important correlations concerning the effect of octahedral sites, residual organics, heat of activation (E a ) and activation free energy ( Delta;G*) values; determined while the removal of citrate/PVA moieties, on nitroarenes reduction rates were well scrutinized and discussed.
원문URL http://click.ndsl.kr/servlet/OpenAPIDetailView?keyValue=03553784&target=NART&cn=NART73256465
첨부파일

추가정보

과학기술표준분류, ICT 기술분류,DDC 분류,주제어 (키워드) 순으로 구성된 추가정보표입니다
과학기술표준분류
ICT 기술분류
DDC 분류
주제어 (키워드) PVA template,MnFe lt,SUB gt,2 lt,/SUB gt,O lt,SUB gt,4 lt,/SUB gt,. Nanoferrites,Characterization,Nitroarenes reduction