首页> 外文期刊>Advanced Optical Materials >Chasing Down the Eu~(2+) Ions: The Delicate Structure−Property Relationships in the Ultra-Narrow Band Phosphor K_(1.6)Na_(2.1)Li_(0.3)[Li_3SiO_4]_4:Eu~(2+)
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Chasing Down the Eu~(2+) Ions: The Delicate Structure−Property Relationships in the Ultra-Narrow Band Phosphor K_(1.6)Na_(2.1)Li_(0.3)[Li_3SiO_4]_4:Eu~(2+)

机译:追逐欧盟〜(2+)离子:超窄带磷光体K_(1.6)NA_(2.1)LI_(0.3)[LI_3SIO_4] _4:EU〜(2+)中的微妙结构 - 性质关系

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摘要

Eu2+-activated phosphors of the UCr4C4 structure type have emerged as promising new (ultra-)narrow band phosphors. Especially the UCr4C4-type alkali lithosilicates have caused a sensation in the field of phosphor research in the recent years due to their consistent (ultra)narrow-band luminescence in the cyan and green range that can pave the way to novel backlighting LEDs with high color gamut. The compound "K2Na2[Li3SiO4](4):Eu2+" stands out with a strikingly narrow emission in the cyan range (0.2 eV or 30 nm full width at half maximum in the energy or wavelength scale, respectively) but the position of the Eu2+ ions within this structure has been so far controversial. High-resolution photoluminescence spectroscopy at 10 K reveals a complex emission spectrum with seven emission bands in the violet to green range. Combination with single-crystal X-ray diffraction (SCXRD) demonstrates that the cation channels in the structure also contain Li+ ions. The presence of emission bands in the violet and blue spectral range reveals that the Eu2+ ions also occupy the available K sites in the structure independently confirmed by advanced ligand field calculations. This study demonstrates that a combination of SCXRD, photoluminescence spectroscopy, and theory can help elucidate advanced structural problems.
机译:EU2 + -Activated磷光体的UCR4C4结构型已经出现为有前途的新(超)窄带磷光体。特别是UCR4C4型碱型岩浆液在近年来冬季荧光调研领域引起了感觉,因为它们在青色和绿色范围内的一致(Ultra)窄带发光,可以为具有高颜色的新型背光LED铺平道路色域。化合物“K2NA2 [Li3SiO4](4):EU2 +”在青色范围内具有尖锐的窄发射(分别在能量或波长或波长尺度的半部最大)中,但是这种结构内EU2 +离子的位置已经存在争议。 10 k下的高分辨率光致发光光谱透露复杂的发射光谱,其中紫色的七个发射带为绿色范围。与单晶X射线衍射(SCXRD)的组合表明,结构中的阳离子通道也含有Li +离子。紫色和蓝色光谱范围内的发射带的存在表明,Eu2 +离子还占据了通过先进的配体场计算独立证实的结构中的可用k位点。本研究表明,SCXRD,光致发光光谱和理论的组合可以帮助阐明先进的结构问题。

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  • 来源
    《Advanced Optical Materials》 |2021年第24期|2101643.1-2101643.14|共14页
  • 作者单位

    Univ Innsbruck Inst Gen Inorgan & Theoret Chem Innrain 80-82 A-6020 Innsbruck Austria;

    Univ Oviedo Dept Phys E-33007 Oviedo Spain|Univ Oviedo CISC Nanomat & Nanotechnol Res Ctr CINN E-33424 El Entegro Spain;

    OSRAM Opto Semicond GmbH Mittelstetter Weg 2 D-86830 Schwabmunchen Germany;

    OSRAM Opto Semicond GmbH Mittelstetter Weg 2 D-86830 Schwabmunchen Germany;

    OSRAM Opto Semicond GmbH Mittelstetter Weg 2 D-86830 Schwabmunchen Germany;

    Private Inst Theoret Chem Phys CH-6600 Muralto Switzerland;

    Univ Utrecht Dept Chem Debye Inst Nanomat Sci Condensed Matter & Interfaces Princetonpl 1 NL-3584 CC Utrecht Netherlands;

    Univ Innsbruck Inst Gen Inorgan & Theoret Chem Innrain 80-82 A-6020 Innsbruck Austria;

    Univ Utrecht Dept Chem Debye Inst Nanomat Sci Condensed Matter & Interfaces Princetonpl 1 NL-3584 CC Utrecht Netherlands|Heinrich Heine Univ Dusseldorf Inst Inorgan Chem Inorgan Photoact Mat Univ Str 1 D-40225 Dusseldorf Germany;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    cyan gap; Eu; (2+); high color gamut; light-emitting diodes; UCr; C-4; (4)-type phosphors; ultra-narrow band emission;

    机译:青色;欧盟;(2 +);高色域;发光二极管;UCR;C-4;(4)型荧光粉;超窄带排放;

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