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Synthesis, vibrational spectroscopy and X-ray structural characterization of novel NIR emitter squaramides

机译:新型NIR发射器Squaramates的合成,振动光谱和X射线结构特征

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Two new 2-naphthyl squaramides, 3-methoxy -4-(2-naphtalenylamino)-3-cyclobutene-1,2-dione (SQ-NPh1) and bis-3,4-(2-naphtalenylamino)-3-cyclobutene-1,2-dione (SQ-NPh2) were synthesized via condensation reaction between the di methylsquarate and 2-naphthylamine. The spectrometric characterization by C-13 NMR confirmed the obtaining of the squaramide derivative and nor the squaraine analog. This hypothesis was corroborated by Raman and Infrared spectroscopy since the characteristic vibrational bands related to the oxocarbon portion of both structures have been assigned, such as the ones for SQ-NPh1 and SQ-NPh2. The single-crystal X-ray crystallography for SQ-NPh1 crystal structures have been solved and the structure of SQ-NPh2 have been refined using Powder Diffraction state-of-art. The SQ-NPh1 crystallizes in monoclinic system in P2/c space group. Both squaramides present absorption in the ultra-visible (220-370 nm) and fluorescent emission in the near-infrared (780-800 nm), besides they also presented high thermal stability (around 570 DC). Generally, only squaraines are reported as NIR emitters, this is the first description of NIR emission for squaramides, and since the synthesis of squaramides is very easy and the rational design of small-molecule NIR fluorophores is of high priority and great value, these results are very promising for the development of novel NIR fluorescent dyes. (C) 2019 Elsevier B.V. All rights reserved.
机译:两种新的2-萘基Squaramides,3-甲氧基-4-(2-萘甲基氨基)-3-环丁烯-1,2-二酮(SQ-NPH1)和双-3,4-(2-萘基氨基)-3-环丁烯 - 1,2-二酮(SQ-NPH2)通过二甲基氨酸甲磺酸盐和2-萘胺之间的缩合反应合成。 C-13 NMR的光谱表征证实了基准衍生物的获得和鳞状模拟。该假设通过拉曼和红外光谱证实,因为已经分配了与两个结构的氧化碳部分相关的特征振动带,例如用于SQ-NPH1和SQ-NPH2的特征振动。已经解决了SQ-NPH1晶体结构的单晶X射线晶体术,并且使用粉末衍射最新技术已经改进了SQ-NPH2的结构。 SQ-NPH1在P2 / C空间组中的单斜晶体系中结晶。除了近红外(780-800nm)中的超可见(220-370nm)和荧光发射中的荧光发射的吸收均外,除了它们也呈现出高热稳定性(约570dc)。通常,只有鳞片被报告为NIR发射器,这是Squaramides的第一次描述,因为Squaramides的合成非常容易,并且小分子NIR荧光团的理性设计是高优先级和大值,因此这些结果对新型NIR荧光染料的发展非常有前途。 (c)2019 Elsevier B.v.保留所有权利。

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