Low Molecular Weight Multistate Photoswitches Based on Simple Norbornadiene-Triazine Scaffolds.

Daniel Krappmann, Adrian J Müller, Erik J Schulze, Harald Maid, Andreas Dreuw, Andreas Hirsch
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Abstract

We have synthesized and characterized a series of simple norbornadiene(NBD)-triazine architectures, including multistate photoswitches with unprecedentedly high information storage densities. The simple mono-NBDs served as suitable model systems to investigate the underlying absorption and switching characteristics. To increase the complexity stepwise, a bis-NBD derivative with a symmetric substitution pattern was investigated next. By combining different NBD substituents with varying electron demands, two asymmetric compounds, one bis-NBD and one tris-NBD, were prepared and investigated. In the case of the tris-NBD, the selective switching of the individual NBD chromophores is hampered by the too closely related optical properties of all three NBD units. On the other hand, the asymmetric photoswitch system containing two NBD-substituents fulfilled the requirements of a selectively addressable multistate system with an extremely high information storage density. Nearly all possible NBD/quadricyclane (QC) combinations could be realized here, including their reversible interconversion and the respective protonated forms. Quantum chemical calculations corroborated our experimental findings.

基于简单降冰片二烯-三嗪支架的低分子量多态光开关。
我们合成并表征了一系列简单的降冰片二烯(NBD)-三嗪结构,包括具有前所未有的高信息存储密度的多态光开关。简单的单nbd作为合适的模型系统来研究潜在的吸收和开关特性。为了逐步提高复杂度,我们研究了一种对称替换模式的双nbd导数。通过不同电子需求的NBD取代基组合,制备了一个双-NBD和一个三-NBD两种不对称化合物。结果表明,在三-NBD的情况下,单个NBD发色团的选择性开关受到所有三个NBD单元过于密切相关的光学性质的阻碍。另一方面,包含两个nbd取代基的非对称光开关系统满足了具有极高信息存储密度的选择性寻址多态系统的要求。在这里,可以实现所有可能的NBD/四环(QC)组合,包括其质子化形式及其可逆相互转化。我们的实验发现得到了量子化学计算的证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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