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Synthesis and characterization of photochromic indolyl substituted fulgides and fulgimides.

机译:光致变色吲哚基取代的三氟乙醛和三氟乙酰亚胺的合成与表征。

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摘要

The fulgide and fulgimide family constitutes an important class of organic photochromic compounds. The ability of fulgides and fulgimides to interconvert between two key forms by irradiation of different wavelength of light has made them promising material in optical memory devices, optical switches and sensors, and specialty dyes and inks. Thermal stability and hydrolytic stability of fulgides and fulgimides are essential for their practical applications. A deuterated trifluoromethyl indolylfulgide was synthesized based on the synthetic pathway of the proteo trifluoromethyl indolylfulgide using commercially available deuterated starting materials. Deuteration of the isopropylidene group improved the thermal stability of the indolylfulgide by a factor of 7.;Fulgimides are the most important fulgide derivatives. Fulgimides improve the hydrolytic stability of fulgides by replacing the succinic anhydride ring with a succinimide ring. A novel trifluoromethyl N-ethoxycarbonylmethyl indolylfulgimide was synthesized from trifluoromethyl indolylfulgide. The trifluoromethyl indolylfulgide was synthesized on a large scale in five steps with an overall yield of 18%. The indolylfulgide was then converted to indolylfulgimide by aminolysis follow by dehydration. The N-ethoxycarbonylmethyl indolylfulgimide showed enhanced hydrolytic stability and photochemical stability in 70/30 ethanol/water.;Three novel aqueous soluble fulgimides, trifluoromethyl carboxylic acid indolylfulgimide, dicarboxylic acid indolylfulgimide, and H-carboxylic acid indolylfulgimide, were synthesized. In sodium phosphate buffer (pH 7.4) at 37 ºC, an unusual hydrolysis of the trifluoromethyl group of the closed form of the carboxylic acid indolylfulgimide resulted in the dicarboxylic acid indolylfulgimide which has an additional carboxylic acid group. The closed form of dicarboxylic acid indolylfulgimide was further decarboxylated to generate H-carboxylic acid indolylfulgimide which was not photochromic. The trifluoromethyl dicarboxylic acid indolylfulgimide is the most robust fulgimide yet reported in aqueous solution.;A novel aqueous soluble methyl carboxylic acid indolylfulgimide was synthesized from methyl indolylfulgide. The methyl indolylfulgide was synthesized in five steps with an overall yield of 21%. The methyl carboxylic acid indolylfulgimide was synthesized by aminolysis follow by dehydration. The methyl carboxylic acid indolylfulgimide is expected to have improved thermal and photochemical stability in aqueous solutions relative to the trifluoromethyl analog.
机译:灭蝇草和灭蝇草族是有机光致变色化合物的重要类别。灭蝇药和灭蝇酰亚胺通过照射不同波长的光而在两种关键形式之间相互转换的能力使它们成为光学存储设备,光学开关和传感器以及特种染料和油墨中很有希望的材料。杀虫剂和杀虫剂的热稳定性和水解稳定性对其实际应用至关重要。基于三氟甲基吲哚基丙基蛋白蛋白的合成途径,使用市售的氘代起始原料合成了氘代三氟甲基吲哚基苷。异亚丙基基团的氘代将吲哚基福来肽的热稳定性提高了7倍。氟甲酰亚胺是最重要的氟代衍生物。呋喃二酰亚胺通过用琥珀酰亚胺环代替琥珀酸酐环来改善苷的水解稳定性。新型三氟甲基N-乙氧基羰基甲基吲哚基富马酰亚胺由三氟甲基吲哚基富马胺合成。分五步大规模合成了三氟甲基吲哚基苷,总产率为18%。然后通过氨解将吲哚基黄酮转化为吲哚基黄酮,随后进行脱水。 N-乙氧基羰基甲基吲哚基富马酰亚胺显示出在70/30乙醇/水中的水解稳定性和光化学稳定性。在37ºC的磷酸钠缓冲液(pH 7.4)中,羧酸吲哚基富马酰亚胺的封闭形式的三氟甲基发生不寻常的水解,产生了具有额外羧酸基团的二羧酸吲哚基富马酰亚胺。封闭形式的二羧酸吲哚基富马酰亚胺被进一步脱羧以产生非光致变色的H-羧酸吲哚基富马酰亚胺。三氟甲基二羧酸吲哚基富马酰亚胺是水溶液中迄今报道的最强效的fulgimide。;由甲基吲哚基富马苷合成了一种新型的水溶性甲基羧酸吲哚基富马酰亚胺。通过五个步骤合成了吲哚基富马酸甲酯,总收率为21%。通过氨解然后脱水合成甲基羧酸吲哚基富马酰亚胺。相对于三氟甲基类似物,预期甲基羧酸吲哚基富马酰亚胺在水溶液中具有改善的热和光化学稳定性。

著录项

  • 作者

    Chen, Xi.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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