首页> 外文期刊>Journal of the American Chemical Society >Photogeneration of Amines from α-Keto Carbamates: Photochemical Studies
【24h】

Photogeneration of Amines from α-Keto Carbamates: Photochemical Studies

机译:α-酮氨基甲酸酯的胺的光生作用:光化学研究

获取原文
获取原文并翻译 | 示例
       

摘要

We investigate the design of new photoprecursors of organic bases and the steric and electronic factors that control their photocleavage to give free amines. The design strategy involves the protection of an amine with novel [(benzoinyl)oxy]carbonyl groups and substituted analogs. The resulting masked amines owe their photosensitivity to the rich photochemistry of the benzoinyl chromophore. The photochemistry of this chromophore allows for the clean photogeneration of free amine upon irradiation with UV light below 400 nm in both the solid state and in solution. The structure of the benzoinyl chromophore was varied to determine the optimal chromophore design. By varying the chromophore design, the influence of various steric and electronic effects on the photoliberation of free amines from α-keto carbamates could be gauged. Structural modification of the aryl rings was intended to probe the electronic factors of the photocyclization. Substitution at the 2 position was varied to investigate the steric factors involved in photocyclization. The practical potential of these photoactive carbamates as organic sources of photogenerated base was demonstrated spectroscopically (UV, IR, and NMR). GC-MS product studies also proved diagnostic in identifying photogenerated base. The thermal properties of this class of base photogenerators were also determined. α-Keto carbamates derived from 3′, 5′-dimethoxybenzoin and its substituted analogs appear particularly attractive. These carbamates undergo near quantitative photocleavage to give free amine along with the corresponding substituted benzo[b]furan photocyclization product. Preliminary evaluation of the solid state quantum yield for cyclohexylamine photogeneration from 3, 3′, 5, 5′-tetramethoxybenzoin cyclohexyl carbamate ranged from 0.03 to 0.08 depending on the exposure wavelength. The variation in photoefficiency correlates with the UV absorbance of the keto chromophore indicating direct excitation of the carbonyl group is the preferred pathway for photocleavage.
机译:我们研究了有机碱的新型光前体的设计以及控制其光解以生成游离胺的空间和电子因素。设计策略包括用新的[(苯甲酰基)氧基]羰基和取代的类似物保护胺。所得的掩蔽胺由于对苯甲酰基生色团的丰富光化学而具有光敏性。该发色团的光化学性质允许在固态和溶液中用低于400 nm的紫外线照射时,游离胺的干净光生。改变苯甲酰基生色团的结构以确定最佳的生色团设计。通过改变生色团的设计,可以测量各种空间和电子效应对α-酮氨基甲酸酯中游离胺光解的影响。芳基环的结构修饰旨在探测光环化的电子因素。改变2位的取代,以研究参与光环化的空间因素。这些光活性氨基甲酸酯作为光生碱的有机来源的实际潜力已通过光谱法(UV,IR和NMR)证明。 GC-MS产品研究还证明可以鉴定光生碱。还确定了此类基础光发生器的热性能。衍生自3',5'-二甲氧基安息香的α-酮氨基甲酸酯及其取代类似物显得特别有吸引力。这些氨基甲酸酯经过近乎定量的光裂解,得到游离胺以及相应的取代的苯并[b]呋喃光环化产物。取决于曝光波长,由3,3',5,5'-四甲氧基苯甲酸环己基氨基甲酸酯生成环己胺的固态量子产率的初步评估范围为0.03至0.08。光效率的变化与酮发色团的紫外线吸收相关,表明直接激发羰基是光裂解的优选途径。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号