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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Deep-blue fluorophores with imidazoacridine acceptors: enhancing photostability and two-photon fluorescence using structural constraint
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Deep-blue fluorophores with imidazoacridine acceptors: enhancing photostability and two-photon fluorescence using structural constraint

机译:具有咪唑吖啶受体的深蓝色荧光团:使用结构约束增强光稳定性和双光子荧光

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摘要

Efficient deep blue luminescent materials are highly sought after for applications in both electronics and bioimaging. Development of such materials has been progressing rapidly, yet fluorophores with high photostability emitting in this region remain uncommon. Herein we report the synthesis of three donor-acceptor dyes based on benzimidazole acceptors and triphenylamine donors. These materials have deep blue emission, CIE(x, y) < (0.17, 0.09), quantum yields above 95% and narrow emission spectra. We demonstrate that restriction of rotational freedom in these compounds, particularly in the triarylamine donor, reduces the rate of photobleaching by up to a factor of 4. Locking these chromophores into planar configurations also improves their cross-section for two-photon excited fluorescence. Proof-of concept studies incorporating these dyes into water-soluble polymer dots suitable for bio-imaging was also demonstrated.
机译:高效的深蓝色发光材料在电子学和生物成像领域都非常受欢迎。这类材料的开发进展迅速,但在这一地区发光的高光稳定性荧光团仍然很少见。本文报道了基于苯并咪唑受体和三苯胺给体的三种给体-受体染料的合成。这些材料具有深蓝色发射、CIE(x,y)<(0.17,0.09)、95%以上的量子产率和窄发射光谱。我们证明,限制这些化合物的旋转自由度,尤其是在三芳胺供体中,可将光漂白的速率降低多达4倍。将这些发色团锁定在平面构型中也可以改善其双光子激发荧光的横截面。还证明了将这些染料纳入适合生物成像的水溶性聚合物点的概念验证研究。

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