Johnsen Mette, Paterson Martin J, Arnbjerg Jacob, Christiansen Ove, Nielsen Christian B, Jørgensen Mikkel, Ogilby Peter R
Center for Oxygen Microscopy and Imaging, Department of Chemistry, University of Aarhus, DK-8000 Arhus, Denmark.
Phys Chem Chem Phys. 2008 Feb 28;10(8):1177-91. doi: 10.1039/b715441k. Epub 2007 Dec 21.
Two-photon excitation spectra have been recorded over the large spectral range of 540-1000 nm for five phenylene-vinylene oligomers that differ in the length of the conjugated pi system. The significant changes observed in the two-photon excitation spectra and absorption cross sections as a function of this systematic change in the chromophore are discussed in light of (1) the corresponding one-photon absorption spectra and (2) high-level density functional response theory calculations performed on analogues of these systems. The results obtained illustrate one way to exploit parameters that influence nonlinear optical properties in large organic molecules. Specifically, data are provided to indicate that when the frequency of the laser used in the two-photon experiment is nearly-resonant with an allowed one-photon transition, significant increases in the two-photon absorption cross section can be realized. This phenomenon of the so-called resonance enhancement allows for greater control in obtaining an optimal response when using existing two-photon chromophores, and provides a much-needed guide for the systematic development and efficient use of two-photon singlet oxygen sensitizers.
已记录了五种在共轭π体系长度上存在差异的亚苯基-乙烯基低聚物在540 - 1000 nm大光谱范围内的双光子激发光谱。鉴于(1)相应的单光子吸收光谱以及(2)对这些体系类似物进行的高水平密度泛函响应理论计算,讨论了在发色团的这种系统变化时双光子激发光谱和吸收截面所观察到的显著变化。所获得的结果说明了一种利用影响大型有机分子非线性光学性质的参数的方法。具体而言,所提供的数据表明,当双光子实验中使用的激光频率与允许的单光子跃迁近乎共振时,双光子吸收截面可实现显著增加。这种所谓的共振增强现象使得在使用现有的双光子发色团时能更好地控制以获得最佳响应,并为双光子单线态氧敏化剂的系统开发和有效利用提供了急需的指导。