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首页> 外文期刊>RSC Advances >Influence of electronic vs. steric factors on the solid-state photochromic performances of new polyoxometalate/spirooxazine and spiropyran hybrid materials
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Influence of electronic vs. steric factors on the solid-state photochromic performances of new polyoxometalate/spirooxazine and spiropyran hybrid materials

机译:电子对型因子对新多氧酸盐/螺氧胺和螺杂交材料的固态光致变色性能的影响

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摘要

Two new photochromic hybrid organic-inorganic supramolecular materials (SN)(2)[W6O19] (SN2W6) and (SP)(2)[W6O19]center dot 0.5CH(3)CN (SP2W6) have been elaborated by combining for the very first time an isopolyoxotungstate [W6O19](2)-with both photoswitchable cationic spirooxazine (SN) and spiropyran (SP), via electrostatic interactions. (SN)(2)[Mo6O19] (SN2Mo6), a third new photochromic compound which contains the [Mo6O19](2)-unit, has been also designed. Their structure was solved by single-crystal X-ray diffraction analysis, and their solid-state photochromic properties in ambient conditions were thoroughly investigated by UV-visible diffuse reflectance spectroscopy. SN2W6 and SN2Mo6 have been proved to be isostructural while SP2W6 is isostructural with its already reported counterpart SP2Mo6. In the SN2M6 and SP2M6 series, the SN and SP molecules are in very close contact with the POM units, which a priori should dramatically limit their photoisomerization in the solid state. However, this strongly varies with the nature of the metal in the [M6O19](2)-unit. Indeed SN2W6 and SP2W6 exhibit remarkable photochromism under low-power UV excitation (lambda(ex) = 365 nm) while SN2Mo6 and SP2Mo6 develop very limited color-change effects under similar UV exposure. These results have unambiguously highlighted that the efficiency of the SN and SP photoisomerizations in these hybrid systems is much more impacted by an electronic factor resulting from the intrinsic optical absorption properties of both SP and POM components than by a steric factor induced by crystal packing.
机译:两种新的光致变色杂种有机无机超分子材料(SN)(2)[W6O19](SN2W6)和(SP)(2)[W6O19]中心点0.5ch(3)CN(SP2W6)通过组合来阐述第一次通过静电相互作用,ISOPOOPOXOTUNGSTATE [W6O19](2) - 可视化阳离子螺旋恶嗪(SN)和螺吡喃(SP)。 (SN)(2)[Mo6O19](SN2MO6),含有含有[MO6O19](2) - 单的第三种新的光致变色化合物。它们的结构通过单晶X射线衍射分析来解决,并且通过UV可见的漫反射光谱彻底研究了它们的固态光致变色特性。 SN2W6和SN2MO6已被证明是Isostr发生器,而SP2W6是具有已经报告的对应SP2MO6的表人图。在SN2M6和SP2M6系列中,SN和SP分子与POM单元非常紧密接触,PIM单位应在固态状态下显着限制它们的光偏见。然而,这种强烈不同于[M6O19](2)的金属的性质。实际上,SN2W6和SP2W6在低功耗紫外线激发下表现出显着的光致变色(Lambda(ex)= 365nm),而SN2MO6和SP2MO6在类似的UV暴露下产生非常有限的变色效果。这些结果毫不含糊地突出显示,这些混合系统中Sn和SP光学素的效率在于SP和POM组分的内在光学吸收特性而不是通过晶体填料诱导的空间因子产生的电子因子。

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  • 来源
    《RSC Advances》 |2015年第97期|共9页
  • 作者单位

    Univ Nantes CNRS Inst Mat Jean Rouxel F-44322 Nantes France;

    Univ Nantes CNRS Inst Mat Jean Rouxel F-44322 Nantes France;

    Univ Versailles St Quentin Yvelines UMR 8180 Inst Lavoisier Versailles F-78035 Versailles France;

    Univ Versailles St Quentin Yvelines UMR 8180 Inst Lavoisier Versailles F-78035 Versailles France;

    Univ Versailles St Quentin Yvelines UMR 8180 Inst Lavoisier Versailles F-78035 Versailles France;

    Univ Versailles St Quentin Yvelines UMR 8180 Inst Lavoisier Versailles F-78035 Versailles France;

    Univ Versailles St Quentin Yvelines UMR 8180 Inst Lavoisier Versailles F-78035 Versailles France;

    Univ Nantes CNRS Inst Mat Jean Rouxel F-44322 Nantes France;

    Univ Nantes CNRS Inst Mat Jean Rouxel F-44322 Nantes France;

    Univ Nantes CNRS Inst Mat Jean Rouxel F-44322 Nantes France;

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  • 正文语种 eng
  • 中图分类 化学;
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