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Structural modulation enables magneto-dielectric effect and enhanced photoactivity in ferroelectric bismuth iron niobate pyrochlore

机译:结构调制能够实现磁介质效应,增强铁铌酸铁纤维纤维纤维纤维纤维效应

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摘要

Bismuth-based pyrochlore oxides in which the structure tolerates significantly lower site misplacement and markedly higher vacancy concentrations exhibit unique physicochemical properties; therefore, manipulation of such a crystal structure by chemical substitution may give rise to intriguing phenomena and extraordinary properties. Herein, we have systematically investigated the effects of the Co substitution on the structural, magnetic, magneto-dielectric and optoelectronic characteristics of ternary bismuth iron niobate pyrochlore oxide with the highest recorded Fe content. Structural modulation induced by the Co dopant was clearly observed by Rietveld refinements and Raman spectra, which are attributed to the displacive disorder nature of the pyrochlore structure and lattice distortions induced by the substitution of Fe sites with Co ions. A dielectric anomaly exhibits a distinct peak temperature shift and intensity increasing under a magnetic field of 1 T, which may be explained in terms of the magnetic state transition and magnetic interactions or fluctuations, and the obvious magneto-dielectric (MD) effect with a maximal MD coefficient of approximate to 4% at approximate to 1 MHz was firstly found in ferroelectric Bi pyrochlores. Remarkably, the Fe/Co-coexisted nanoparticles showed an anomalous light absorption and exhibited an enhanced visible-light-responsive photocatalytic performance by means of the dye decomposition and the photoelectrochemical technique. The findings indicated structural modulation using element substitution can realize excellent physicochemical behaviours and novel phenomena and shed new light on controlling the atomic structure and functional properties in isostructural pyrochlore oxides.
机译:基于Biscuth的纤维素的氧化物,其中结构可耐受显着降低的位点错位,并且明显更高的空位浓度表现出独特的物理化学性质;因此,通过化学取代的操纵这种晶体结构可能导致有趣的现象和非凡的性质。在此,我们系统地研究了CO取代对三元铋铁铌酸盐纤维氧化物的结构,磁,磁介质和光电特性的影响,具有最高记录的Fe含量。通过RIETVELD改进和拉曼光谱清楚地观察到CO掺杂剂诱导的结构调制,其归因于用CO离子取代Fe位点的烧焦结构和晶格畸变的流离性紊乱性质。介电异常在1T的磁场下表现出不同的峰值温度偏移和强度增加,这可以在磁性状态转换和磁相互作用或波动方面解释,以及具有最大的明显的磁电介质(MD)效应首先在铁电BI含油纤维中发现MD近似为4%的近似为4%。值得注意的是,Fe /共同共存纳米颗粒显示出异常的光吸收,并通过染料分解和光电化学技术表现出增强的可见光响应光催化性能。该研究结果表明,使用元素替代的结构调制可以实现优异的物理化学行为和新颖的现象,并揭示在IsoStrontucton烧火氧化物中控制原子结构和功能性能。

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    Xinyang Normal Univ Henan Collaborat Innovat Ctr Energy Saving Bldg M Xinyang 464000 Peoples R China;

    Univ Sci &

    Technol China Dept Mat Sci &

    Engn CAS Key Lab Mat Energy Convers Hefei 230026 Anhui Peoples R China;

    Xinyang Normal Univ Henan Collaborat Innovat Ctr Energy Saving Bldg M Xinyang 464000 Peoples R China;

    Xinyang Normal Univ Henan Collaborat Innovat Ctr Energy Saving Bldg M Xinyang 464000 Peoples R China;

    Xinyang Normal Univ Henan Collaborat Innovat Ctr Energy Saving Bldg M Xinyang 464000 Peoples R China;

    Xinyang Normal Univ Henan Collaborat Innovat Ctr Energy Saving Bldg M Xinyang 464000 Peoples R China;

    Xinyang Normal Univ Henan Collaborat Innovat Ctr Energy Saving Bldg M Xinyang 464000 Peoples R China;

    Xinyang Normal Univ Henan Collaborat Innovat Ctr Energy Saving Bldg M Xinyang 464000 Peoples R China;

    Univ Wollongong Inst Superconducting &

    Elect Mat Wollongong NSW 2500 Australia;

    Univ Sci &

    Technol China Dept Mat Sci &

    Engn CAS Key Lab Mat Energy Convers Hefei 230026 Anhui Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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