Drobizhev Mikhail, Stepanenko Yuriy, Rebane Aleksander, Wilson Craig J, Screen Thomas E O, Anderson Harry L
Department of Physics, Montana State University, Bozeman, Montana 59717-384, USA.
J Am Chem Soc. 2006 Sep 27;128(38):12432-3. doi: 10.1021/ja0649623.
We present the two-photon absorption (2PA) spectra of a series of conjugated porphyrin oligomers containing N = 2, 4, 8, and ca. 13 monomer units, meso-meso connected with butadiyne linkers. We demonstrate that, in the coplanar double-strand arrays, self-assembled upon addition of 4,4'-bipyridyl, the conjugation length increases dramatically, leading to very strong cooperative enhancement of 2PA. We analyze the scaling of 2PA in both the double-strand and rotationally free single-strand arrays and show how the effective conjugation length in both cases is linked to the observed 2PA properties. By introducing a "conjugation signature" for the 2PA strength, we show that, in double-strand arrangement, the conjugation embraces the whole molecule up to the tetramer level, whereas in single-strand arrangement, it is always less than N, except for N = 2, but keeps increasing until N = 8. Our finding of extremely strong 2PA cross section, sigma2 approximately 105 GM, in double-strand oligomers peaking at 1.3 mum can find use for signal processing in fiber-optic devices.
我们展示了一系列含有N = 2、4、8和约13个单体单元的共轭卟啉低聚物的双光子吸收(2PA)光谱,这些单体通过丁二炔连接体进行中位-中位连接。我们证明,在加入4,4'-联吡啶后自组装形成的共面双链阵列中,共轭长度显著增加,导致2PA的协同增强非常强烈。我们分析了双链和旋转自由单链阵列中2PA的标度,并展示了在这两种情况下有效共轭长度如何与观察到的2PA性质相关联。通过引入2PA强度的“共轭特征”,我们表明,在双链排列中,共轭延伸至整个分子直至四聚体水平,而在单链排列中,除了N = 2外,共轭长度始终小于N,但会持续增加直至N = 8。我们发现在1.3μm处达到峰值的双链低聚物中具有极强的2PA截面,σ2约为105 GM,这可用于光纤器件中的信号处理。