Aujard Isabelle, Benbrahim Chouaha, Gouget Marine, Ruel Odile, Baudin Jean-Bernard, Neveu Pierre, Jullien Ludovic
Département de Chimie (C.N.R.S. U.M.R. 8640), Ecole Normale Supérieure, 24 rue Lhomond, 75231 Paris Cedex 05, France.
Chemistry. 2006 Sep 6;12(26):6865-79. doi: 10.1002/chem.200501393.
We evaluated the o-nitrobenzyl platform for designing photolabile protecting groups with red-shifted absorption that could be photolyzed upon one- and two-photon excitation. Several synthetic pathways to build different conjugated o-nitrobenzyl backbones, as well as to vary the benzylic position, are reported. Relative to the reference 4,5-dimethoxy-2-nitrobenzyl group, several o-nitrobenzyl derivatives exhibit a large and red-shifted one-photon absorption within the near-UV range. Uncaging after one-photon excitation was studied by measuring UV-visible absorption and steady-state fluorescence emission on model caged ethers and esters. In the whole series investigated, the caged substrates were released cleanly upon photolysis. Quantum yields of uncaging after one-photon absorption lie within the 0.1-1 % range. We observed that these drop as the maximum wavelength absorption of the o-nitrobenzyl protecting group is increased. A new method based on fluorescence correlation spectroscopy (FCS) after two-photon excitation was used to measure the action uncaging cross section for two-photon excitation. The series of o-nitrobenzyl caged fluorescent coumarins investigated exhibit values within the 0.1-0.01 Goeppert-Mayer (GM) range. Such results are in line with the low quantum yields of uncaging associated with cross-sections of 1-50 GM for two-photon absorption. Although the cross-sections for one- and two-photon absorption of o-nitrobenzyl photolabile protecting groups can be readily improved, we emphasize the difficulty in enlarging the corresponding action uncaging cross-sections in view of the observed trend of their quantum yield of uncaging.
我们评估了邻硝基苄基平台,用于设计具有红移吸收的光不稳定保护基团,该基团可在单光子和双光子激发下被光解。报道了几种构建不同共轭邻硝基苄基主链以及改变苄基位置的合成途径。相对于参考的4,5-二甲氧基-2-硝基苄基,几种邻硝基苄基衍生物在近紫外范围内表现出大的红移单光子吸收。通过测量模型笼状醚和酯的紫外可见吸收和稳态荧光发射,研究了单光子激发后的解笼效应。在所研究的整个系列中,笼状底物在光解后能被干净地释放。单光子吸收后的解笼量子产率在0.1-1%范围内。我们观察到,随着邻硝基苄基保护基团的最大波长吸收增加,这些量子产率会下降。一种基于双光子激发后荧光相关光谱(FCS)的新方法被用于测量双光子激发的作用解笼截面。所研究的一系列邻硝基苄基笼状荧光香豆素的值在0.1-0.01戈培尔-迈耶(GM)范围内。这些结果与双光子吸收截面为1-50 GM时解笼的低量子产率一致。尽管邻硝基苄基光不稳定保护基团的单光子和双光子吸收截面可以很容易地得到改善,但鉴于观察到的解笼量子产率趋势,我们强调扩大相应的作用解笼截面存在困难。