Vacancy-induced interfacial ferromagnetic features in SmFeO-filled graphitic carbon foam

We report a novel structural and magnetic investigation of carbon foam (CFM) materials filled with SmFeO 3 crystals produced by (1) high temperature fusion between Sm 2 O 3 - and Fe 3 C-filled carbon onions and (2) annealing of iron filled CFM with nanosized Sm 2 O 3 . Presence of a defect-rich mono...

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Veröffentlicht in:RSC advances 2020-03, Vol.1 (17), p.9878-9883
Hauptverfasser: Fayazi, Mahsa, Shuai, Gao, Liu, Bingyan, Lei, Li, Sameera, Ivaturi, Odunmbaku, Omololu, Wang, Shanling, Wen, Jiqiu, Boi, Filippo S
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container_end_page 9883
container_issue 17
container_start_page 9878
container_title RSC advances
container_volume 1
creator Fayazi, Mahsa
Shuai, Gao
Liu, Bingyan
Lei, Li
Sameera, Ivaturi
Odunmbaku, Omololu
Wang, Shanling
Wen, Jiqiu
Boi, Filippo S
description We report a novel structural and magnetic investigation of carbon foam (CFM) materials filled with SmFeO 3 crystals produced by (1) high temperature fusion between Sm 2 O 3 - and Fe 3 C-filled carbon onions and (2) annealing of iron filled CFM with nanosized Sm 2 O 3 . Presence of a defect-rich monolayer-like CFM arrangement characterized by sharp interfaces with a SmFeO 3 single-crystal phase is demonstrated through TEM and HRTEM. Further, the presence of intense sp 3 -rich features with variable carbonate content is evidenced by XPS and Raman spectroscopy. Complementary VSM, SQUID and ESR show also presence of intrinsic magnetization features which appeared to be attributable to the interfacial vacancy-rich regions of the graphitic CFM layers, as confirmed by Raman spectroscopy. Together with these signals, possible ferromagnetic contributions from the SmFeO 3 phase and α-Fe impurities are reported. These observations highlight therefore the presence of switchable interfacial magnetization features at the carbon/SmFeO 3 interface due to the variable concentrations of vacancies at the CFM interface, opening new directions towards applications in magnetic and interfacial-driven ferroelectric devices. We report a novel structural and magnetic investigation of carbon foam (CFM) filled with SmFeO 3 crystals produced by (1) high temperature fusion between Sm 2 O 3 and Fe 3 C-filled carbon onions, and (2) annealing of iron filled CFM with nanosized Sm 2 O 3 .
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Presence of a defect-rich monolayer-like CFM arrangement characterized by sharp interfaces with a SmFeO 3 single-crystal phase is demonstrated through TEM and HRTEM. Further, the presence of intense sp 3 -rich features with variable carbonate content is evidenced by XPS and Raman spectroscopy. Complementary VSM, SQUID and ESR show also presence of intrinsic magnetization features which appeared to be attributable to the interfacial vacancy-rich regions of the graphitic CFM layers, as confirmed by Raman spectroscopy. Together with these signals, possible ferromagnetic contributions from the SmFeO 3 phase and α-Fe impurities are reported. These observations highlight therefore the presence of switchable interfacial magnetization features at the carbon/SmFeO 3 interface due to the variable concentrations of vacancies at the CFM interface, opening new directions towards applications in magnetic and interfacial-driven ferroelectric devices. 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title Vacancy-induced interfacial ferromagnetic features in SmFeO-filled graphitic carbon foam
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