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Enhanced Resonance Energy Transfer and White-Light Emission from Organic Fluorophores and Lanthanides in Dendron-based Hybrid Hydrogel

机译:Dendron基杂化水凝胶中有机荧光团和镧系元素的共振能量转移增强和白光发射。

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In this paper, we have investigated the use of poly(aryl ether) dendron-based gel as a medium for resonance energy transfer (RET) from organic donors (phenanthrene, naphthalene, and pyrene) to lanthanide [Eu(III) and Tb(III)] ions. The gel has been prepared through self-assembly of glucose-cored poly(aryl ether) dendrons in a dimethyl sulfoxide/water mixture (1:9 v/v). The efficiency of RET was calculated by metal-centered emission quantum yield measurements in the gel medium. While there was no resonance energy transfer observed between the donor-acceptor pairs in solution, efficient RET has been observed in the gel medium. The metal-centered quantum yield values were 11.9% for phenanthrene Eu(III), 3.9% for naphthalene-Eu(III), and 3.6% for pyrene Eu(III) systems. Partial RET in the system has been utilized to generate white-light emission from the gel by incorporating an additional lanthanide ion, Tb(III), along with the organic donors and Eu(III). The CIE (Commission Internationale d'Eclairage) coordinates obtained for gels formed by phenanthrene Tb(III) Eu(III) (PTE), naphthalene-(NTE), and pyrene Tb(III) Eu(III) (PyTE) were (0.33, 0.32) for PTE, (0.35, 0.37) for NTE, and (0.35, 0.33) for PyTE. The correlated color temperatures (CCT) for white-light-emitting gels were calculated, and the values (5520 K for PTE, 4886 K for NTE, and 4722 K for PyTE) suggest that the system generates cool white light.
机译:在本文中,我们研究了基于聚(芳基醚)树突的凝胶作为介质从有机供体(菲,萘和pyr)到镧系元素[Eu(III)和Tb( III)]离子。通过在二甲亚砜/水混合物(1:9 v / v)中自组装有葡萄糖核的聚(芳基醚)树突来制备凝胶。通过在凝胶介质中以金属为中心的发射量子产率测量来计算RET的效率。虽然在溶液中的供体-受体对之间未观察到共振能量转移,但在凝胶介质中已观察到有效的RET。对于菲Eu(III),以金属为中心的量子产率值为11.9%,对萘-Eu(III)为3.9%,对于EuEu(III)体系为3.6%。该系统中的部分RET已通过掺入其他镧系元素离子Tb(III),有机供体和Eu(III)从凝胶中产生白光发射。由菲Tb(III)Eu(III)(PTE),萘-(NTE)和pyr Tb(III)Eu(III)(PyTE)形成的凝胶获得的CIE(国际照明委员会)坐标为(0.33 ,对于PTE为0.32),对于NTE为(0.35,0.37),对于PyTE为(0.35,0.33)。计算了发白光凝胶的相关色温(CCT),值(PTE为5520 K,NTE为4886 K,PyTE为4722 K)表明系统产生冷白色光。

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