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Resonance energy transfer between cyanine dyes in hybrid films of layered silicate prepared by layer-by-layer method

机译:通过层逐层制备的分层硅酸盐中氰胺染料之间的共振能量转移

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摘要

Layer-by-layer (LbL) assemblies exhibiting efficient resonance energy transfer (RET) were prepared by alternating deposition on a quartz slide substrate. Each of the prepared films contained alternating layers of poly electrolyte: poly(diallyldimethylammonium chloride) (PDDA) and saponite nanolayers (SapNL), which were prepared from layered synthetic saponite (Sap), which adsorbs cyanine dye cations, 3,3'-diethyl-oxocyanine iodide (OxCy) or 3,3'-diethyl-2,2'-thiacyanine iodide (ThCy). These dyes had been also selected due to their high photoactivity in Sap systems, and because they form a suitable pair for RET. Films with both the dyes were prepared to obtain alternating layers containing these dyes. Simpler films containing one type of dye were prepared for comparison. Absorption spectroscopy was used to monitor any changes occurring during the deposition of the films. The dyes did not alter their spectral properties, and the formation of dye aggregates was negligible. The deposition of each new PDDA layer led to the release of the dye cations from the outer surface of the film. This phenomenon was interpreted as competitive adsorption between the dye and PDDA cations. Fluorescence spectroscopy was applied to characterize the luminescence of the films and the efficiency of energy transfer. Typical values of RET efficiency were in the range of 0.8-0.9, and slightly increased with the number of deposited layers. This could be interpreted as a consequence of increasing film thickness as the number of layers that were actively involved in this photophysical process gradually increased. LbL assemblies are very interesting materials that can be prepared in a simple way but exhibit very interesting properties.
机译:通过在石英滑动基板上交替沉积来制备表现出高效共振能量转移(RET)的逐层(LBL)组件。所制备的膜中的每种含有聚电解质的交替层:聚(二烯丙基甲基氯化铵)(PDDA)和皂石纳米组(SAPN1),其由层状合成皂石(SAP)制备,其吸附氰染料阳离子,3,3'-二乙基 - 脱氧氰胺碘化物(恶毒)或3,3'-二乙基-2,2'-硫氰酸锰碘化物(THCY)。由于SAP系统中的高光接活性,因此也选择了这些染料,因为它们形成了适用于RET的对。制备具有两种染料的薄膜以获得含有这些染料的交替的层。制备含有一种染料的更简单的薄膜进行比较。吸收光谱法用于监测在沉积薄膜期间发生的任何变化。染料没有改变它们的光谱性质,并且染料聚集体的形成可忽略不计。每个新的PDDA层的沉积导致染料阳离子的释放来自膜的外表面。这种现象被解释为染料和PDDA阳​​离子之间的竞争吸附。施加荧光光谱法表征薄膜的发光和能量转移效率。 RET效率的典型值在0.8-0.9的范围内,并且随着沉积层的数量略微增加。这可以解释为增加薄膜厚度作为积极参与该光药过程的层数的后果,逐渐增加。 LBL组件是非常有趣的材料,可以以简单的方式制备,但表现出非常有趣的性质。

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  • 来源
    《Applied clay science》 |2021年第3期|105985.1-105985.9|共9页
  • 作者单位

    Slovak Acad Sci Inst Inorgan Chem Dubravks Cesta 9 Bratislava 84511 Slovakia|Slovak Acad Sci Ctr Adv Mat Applicat Dubravks Cesta 9 Bratislava 84511 Slovakia;

    Shimane Univ Grad Sch Nat Sci & Technol 1060 Nishi Kawatsu Cho Matsue Shimane 6908504 Japan;

    Shimane Univ Grad Sch Nat Sci & Technol 1060 Nishi Kawatsu Cho Matsue Shimane 6908504 Japan;

    Slovak Acad Sci Inst Inorgan Chem Dubravks Cesta 9 Bratislava 84511 Slovakia;

    Slovak Acad Sci Inst Inorgan Chem Dubravks Cesta 9 Bratislava 84511 Slovakia|Comenius Univ Fac Nat Sci Dept Phys & Theoret Chem Ilkovicova 6 SK-84215 Bratislava Slovakia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cyanine dyes; Smectite nanolayers; Resonance energy transfer; Layer by layer; Dye aggregation;

    机译:青色染料;蒙脱石纳米组;谐振能量转移;层逐层;染料聚集;
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