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作 者:Bhagyashree Munisha Bindhybasinee Mishra Jyotirmayee Nanda
机构地区:[1]Centre for Nanoscience and Nanotechnology,ITER,S‘O’A(Deemed to be)University,Khandagiri,Bhubaneswar,751030,Odisha,India [2]Department of Physics,ITER,S‘O’A(Deemed to be)University,Khandagiri,Bhubaneswar,751030,Odisha,India
出 处:《Journal of Rare Earths》2023年第1期19-31,共13页稀土学报(英文版)
基 金:Project supported by Science and Engineering Research Board (SERB),Department of Science and Technology (DST),Government of India(EMR/2016/007046)。
摘 要:Hexagonal rare-earth manganites have attracted considerable interest due to their complex multiferroic properties,and they possess a spontaneous electric polarization and may be utilized in various technological applications ranging from solar cells to non-volatile memories and light polarizers.The narrow bandgap of hexagonal rare-earth manganite-based compounds can perform remarkable optical anisotropy properties,which make these very efficient photovoltaic materials in parallel with the widely used TiO_(2)-based materials.Substantial enlargement of the traditional field of hexagonal rare-earth manganite photocatalysis also arose in the last decade.This article imparts an extensive review of the rational synthesis,optical properties,structural characterization,and applications of hexagonal rare-earth manganite.Fundamental properties of hexagonal rare-earth perovskite manganite are also emphasized,and a range of unique applications in photocatalysis and photovoltaics are discussed.Eventually,we wind up this review with some linear perspectives and future research in this area.
关 键 词:Yttrium manganite MULTIFERROIC Optical analysis PHOTOCATALYSIS Photovoltaics Rare earths
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