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Novel report on single phase BiFeO3 nanorod layer synthesised rapidly by novel hot-wall spray pyrolysis system: evidence of high magnetization due to surface spins
by
Saravanakumar, K.
, Choudhary, R. J.
, Jithin, M.
, Patidar, Manju Mishra
, Devaraj, R.
, Marimuthu, G.
, Sanjeeviraja, C.
, Mahalakshmi, K.
, Moses Ezhil Raj, A.
, Sreelakshmi, V. R.
, Razad, P. M.
, Ganesan, V.
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Materials Science
/ Optical and Electronic Materials
2017
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Novel report on single phase BiFeO3 nanorod layer synthesised rapidly by novel hot-wall spray pyrolysis system: evidence of high magnetization due to surface spins
by
Saravanakumar, K.
, Choudhary, R. J.
, Jithin, M.
, Patidar, Manju Mishra
, Devaraj, R.
, Marimuthu, G.
, Sanjeeviraja, C.
, Mahalakshmi, K.
, Moses Ezhil Raj, A.
, Sreelakshmi, V. R.
, Razad, P. M.
, Ganesan, V.
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Materials Science
/ Optical and Electronic Materials
2017
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Novel report on single phase BiFeO3 nanorod layer synthesised rapidly by novel hot-wall spray pyrolysis system: evidence of high magnetization due to surface spins
by
Saravanakumar, K.
, Choudhary, R. J.
, Jithin, M.
, Patidar, Manju Mishra
, Devaraj, R.
, Marimuthu, G.
, Sanjeeviraja, C.
, Mahalakshmi, K.
, Moses Ezhil Raj, A.
, Sreelakshmi, V. R.
, Razad, P. M.
, Ganesan, V.
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Materials Science
/ Optical and Electronic Materials
2017
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Novel report on single phase BiFeO3 nanorod layer synthesised rapidly by novel hot-wall spray pyrolysis system: evidence of high magnetization due to surface spins
Journal Article
Novel report on single phase BiFeO3 nanorod layer synthesised rapidly by novel hot-wall spray pyrolysis system: evidence of high magnetization due to surface spins
2017
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Overview
This is the novel report on the rapid synthesis of single phase BiFeO
3
nanorods by novel hot wall assisted spray pyrolysis system. The deposition has been carried out in an indigenously fabricated system and the entire process is completed in 4 s time duration. The structural, morphological, optical and magnetic properties of BiFeO
3
nanorods have been studied in the work. The mechanism of growth of BiFeO
3
nanorods has been explained extensively. The magnetic studies carried out with SQUID-VSM results BiFeO
3
nanorods showing higher saturated magnetization in comparing with previous reports.
Publisher
Springer US
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