School of Chemistry, University of Hyderabad, Hyderabad-500 046, India.
J Phys Chem B. 2010 Jan 21;114(2):849-56. doi: 10.1021/jp909508v.
Suppression of self-quenching of fluorescence emission in supramolecular systems is of fundamental interest in the design and development of novel optical materials. While a number of molecular design and assembly strategies have been formulated for the fabrication of molecular crystals with enhanced light emission, parallel explorations based on systematic approaches in the domain of molecular ultrathin films are rare. We have investigated Langmuir-Blodgett films of amphiphilic molecules bearing the same hemicyanine choromophore headgroup but with different possibilities of attachment of the octadecyl hydrocarbon chain, under different deposition conditions. Fluorescence spectroscopy studies indicate enhanced light emission in the derivative with a "tail-head-tail" structure. The observed trends are attributed to the amphiphile structure, nature of deposition, and the chromophore orientations revealed through polarized absorption spectra of the films. The study suggests a simple design strategy toward realization of molecular ultrathin films with enhanced light emission.
在设计和开发新型光学材料时,超分子体系中荧光发射的自猝灭抑制具有重要意义。虽然已经提出了许多用于制造具有增强发光的分子晶体的分子设计和组装策略,但基于分子超薄膜领域的系统方法的平行探索却很少。我们研究了具有相同半花菁发色团但具有不同十八碳氢链附着可能性的两亲分子的 Langmuir-Blodgett 膜,在不同的沉积条件下。荧光光谱研究表明,具有“头尾尾”结构的衍生物具有增强的发光。观察到的趋势归因于两亲分子的结构、沉积的性质以及通过薄膜的偏振吸收光谱揭示的发色团取向。该研究提出了一种简单的设计策略,可实现具有增强发光的分子超薄膜。