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Development of Eu~(2+) and Mn~(2+) co-activated silicate phosphor for plant cultivation light source

机译:Eu〜(2+)和Mn〜(2+)共激活硅酸盐荧光粉用于植物栽培光源的研制

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摘要

Various light sources for plant production have been developed to establish a completely controlled factory. We propose a pulse light source using Xe discharge. For the rapid growth of the plant, an intense light covering the absorption spectral region of chlorophyll is demanded, and periodic irradiation is also required because the photosynthetic reaction has a certain period. In this study, Sr3MgSi2O8:Eu,Mn phosphor powders with various Eu and Mn content, which show two emission peaks in the absorption region of photosynthetic pigment and phytochrome, were synthesized, and were analyzed using X-ray diffraction, photoluminescence and electron spin resonance spectroscopy. It was found that the exchange-coupled Mn-Mn and Eu-Mn pairs lead the rapid decay of Mn emission and efficient energy transfer from Eu and Mn ions, respectively. A plasma tube array panel using the phosphor was also fabricated and the similar emission spectrum of Sr3MgSi2O8:Eu,Mn is obtained under vacuum-UV excitation in comparison to the UV excitation. (C) 2019 The Japan Society of Applied Physics
机译:已经开发出用于工厂生产的各种光源以建立完全受控的工厂。我们提出使用氙气放电的脉冲光源。为了使植物快速生长,需要强光覆盖叶绿素的吸收光谱区域,并且由于光合作用反应具有一定时期,因此还需要定期照射。本研究合成了具有不同Eu和Mn含量的Sr3MgSi2O8:Eu,Mn荧光粉,它们在光合色素和植物色素的吸收区域显示两个发射峰,并利用X射线衍射,光致发光和电子自旋共振进行了分析。光谱学。研究发现,交换耦合的Mn-Mn和Eu-Mn对分别导致Mn的快速衰减和Eu和Mn离子的有效能量传递。还制造了使用磷光体的等离子管阵列面板,与紫外激发相比,在真空-紫外激发下获得了相似的Sr3MgSi2O8:Eu,Mn发射光谱。 (C)2019日本应用物理学会

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  • 来源
    《Japanese journal of applied physics》 |2019年第sf期|SFFD03.1-SFFD03.9|共9页
  • 作者单位

    Tokushima Bunri Univ, Dept Nano Mat & Bio Engn, Sanuki, Kagawa 7692193, Japan;

    Tokushima Bunri Univ, Dept Nano Mat & Bio Engn, Sanuki, Kagawa 7692193, Japan;

    Tokushima Bunri Univ, Dept Nano Mat & Bio Engn, Sanuki, Kagawa 7692193, Japan;

    Japan Synchrotron Radiat Res Inst, Sayo, Hyogo 6795198, Japan;

    Tottori Univ, Grad Sch Engn, Tottori 6808552, Japan;

    Tottori Univ, Grad Sch Engn, Tottori 6808552, Japan;

    Tottori Univ, Grad Sch Engn, Tottori 6808552, Japan;

    Kobe Univ, Grad Sch Sci, Kobe, Hyogo 6578501, Japan;

    Kobe Univ, Grad Sch Sci, Kobe, Hyogo 6578501, Japan;

    Kobe Univ, Res Facil Ctr Sci & Technol, Kobe, Hyogo 6578501, Japan;

    Kobe Univ, Res Facil Ctr Sci & Technol, Kobe, Hyogo 6578501, Japan;

    Kobe Univ, Res Facil Ctr Sci & Technol, Kobe, Hyogo 6578501, Japan;

    Kobe Univ, Mol Photosci Res Ctr, Kobe, Hyogo 6578501, Japan;

    Kobe Univ, Grad Sch Sci, Kobe, Hyogo 6578501, Japan|Kobe Univ, Mol Photosci Res Ctr, Kobe, Hyogo 6578501, Japan;

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