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Synthesis of novel stilbene-alkoxysilane fluorescent brighteners, and their performance on cotton fiber as fluorescent brightening and ultraviolet absorbing agents

机译:新型-烷氧基硅烷荧光增白剂的合成及其在棉纤维上的荧光增白和紫外吸收剂性能

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Two novel fluorescent brightening agents (compounds 3a—b shown in Figure 1) were synthesized, using a facile three-step synthetic route, from 4,4'-diamino-2,2'-disulfonic-stilbene, cyanuric chloride, and a readily cross-linkable 3-aminopropyltrimethoxy silane. The products contain hydrolytically active tri-methoxysilyl, (—Si(OCH)3), functional groups that readily hydrolyze in the presence of water, and subsequently generate a water insoluble silicon cross-linked-network (Si—O—Si) via a condensation process. The cross-linked product hydrolyzes on treatment with hot aqueous sodium hydroxide to silanols (-Si(OH)3) to form compounds 4a—b which are readily water soluble and produce a clear fluorescent solution. The silanol forms of compounds 4a—b were used for further characterization and performance evaluation. The structures of compounds 4a—b were characterized by ~1H-NMR, Fourier-Transform infrared (FT-IR) spectroscopy and negative electrospray ionization mass (~-ESI-MS) spectroscopy. Compounds were applied to cotton fiber as fluorescent brightening agents and their performance was evaluated by measuring the degree of whiteness, ultraviolet protection factor (UPF), fluorescence and acid fastness. Results showed that application of 0.25% (o.w.f) of compounds 4a-b impart a high degree of whiteness (CIE WI = 144,139) as well as good ultraviolet protection factor (UPF = 29, 27) on cotton fiber exhibiting a significant increase in whiteness and UV blocking properties compared to untreated substrate (CIE WI = 81, UPF = 5). Acid fastness tests of both compounds showed a slight change in fluorescence emission intensities as a function of pH. In acidic solutions, a shift in emission maximum occurs at pH 3 from 434 to 453 nm and from 435 to 457 nm, due to the protonation of amino and sulfonic groups of stilbene fluorophore which substantially reduces the quenching process. Published by Elsevier Ltd.
机译:使用一种简便的三步合成路线,从4,4'-二氨基-2,2'-二磺酸二苯乙烯,氰尿酰氯和一种易于合成的化合物中合成了两种新型荧光增白剂(图1中所示的化合物3a-b)。可交联的3-氨基丙基三甲氧基硅烷。产品包含具有水解活性的三甲氧基甲硅烷基(-Si(OCH)3),这些官能团在水的存在下容易水解,随后通过水合生成不溶于水的硅交联网络(Si-O-Si)冷凝过程。交联产物在用热的氢氧化钠水溶液处理后水解为硅烷醇(-Si(OH)3),形成化合物4a-b,该化合物易于水溶性并产生透明的荧光溶液。硅烷醇形式的化合物4a-b用于进一步表征和性能评估。化合物4a-b的结构通过〜1H-NMR,傅立叶变换红外(FT-IR)光谱和负电喷雾电离质谱(〜-ESI-MS)光谱进行表征。将化合物作为荧光增白剂应用到棉纤维上,并通过测量白度,紫外线保护因子(UPF),荧光和耐酸牢度来评估其性能。结果表明,在棉纤维上添加0.25%(owf)的化合物4a-b可赋予棉白度高(CIE WI = 144,139)和良好的紫外线防护因子(UPF = 29,27),从而显着提高白度与未处理的底材(CIE WI = 81,UPF = 5)相比,UV阻隔性能好。两种化合物的耐酸性测试表明,荧光发射强度随pH的变化略有变化。在酸性溶液中,由于二苯乙烯基荧光团的氨基和磺酸基团的质子化,在3的pH值下最大发射发生了从434 nm到453 nm和从435 nm到457 nm的转变,这大大减少了淬灭过程。由Elsevier Ltd.发布

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