Duran-Sampedro Gonzalo, Esnal Ixone, Agarrabeitia Antonia R, Bañuelos Prieto Jorge, Cerdán Luis, García-Moreno Inmaculada, Costela Angel, Lopez-Arbeloa Iñigo, Ortiz María J
Departamento de Quimica Organica I, Facultad de Ciencias Quimicas, Universidad Complutense, 28040 Madrid (Spain), Fax: (+34) 913944103.
Chemistry. 2014 Feb 24;20(9):2646-53. doi: 10.1002/chem.201303579. Epub 2014 Jan 22.
A new library of E- and C-4,4-difluoro-4-bora-3a,4a-diaza-s-indacene (BODIPY) derivatives has been synthesized through a straightforward protocol from commercially available BODIPY complexes, and a systematic study of the photophysical properties and laser behavior related to the electronic properties of the B-substituent group (alkynyl, cyano, vinyl, aryl, and alkyl) has been carried out. The replacement of fluorine atoms by electron-withdrawing groups enhances the fluorescence response of the dye, whereas electron-donor groups diminish the fluorescence efficiency. As a consequence, these compounds exhibit enhanced laser action with respect to their parent dyes, both in liquid solution and in the solid phase, with lasing efficiencies under transversal pumping up to 73 % in liquid solution and 53 % in a solid matrix. The new dyes also showed enhanced photostability. In a solid matrix, the derivative of commercial dye PM597 that incorporated cyano groups at the boron center exhibited a very high lasing stability, with the laser emission remaining at the initial level after 100 000 pump pulses in the same position of the sample at a 10 Hz repetition rate. Distributed feedback laser emission was demonstrated with organic films that incorporated parent dye PM597 and its cyano derivative. The films were deposited onto quartz substrates engraved with appropriate periodical structures. The C derivative exhibited a laser threshold lower than that of the parent dye as well as lasing intensities up to three orders of magnitude higher.
通过一种直接的方法,以市售的硼二吡咯(BODIPY)配合物为原料,合成了一个新的E-和C-4,4-二氟-4-硼-3a,4a-二氮杂-s-茚(BODIPY)衍生物库,并对与B-取代基(炔基、氰基、乙烯基、芳基和烷基)电子性质相关的光物理性质和激光行为进行了系统研究。用吸电子基团取代氟原子可增强染料的荧光响应,而给电子基团则会降低荧光效率。因此,这些化合物相对于其母体染料在液体溶液和固相中均表现出增强的激光作用,在横向泵浦下,液体溶液中的激光效率高达73%,固体基质中的激光效率高达53%。新染料还表现出增强的光稳定性。在固体基质中,在硼中心引入氰基的商业染料PM597的衍生物表现出非常高的激光稳定性,在10 Hz重复频率下,在样品的同一位置经过100000次泵浦脉冲后,激光发射仍保持在初始水平。用掺入母体染料PM597及其氰基衍生物的有机薄膜证明了分布反馈激光发射。这些薄膜沉积在刻有适当周期性结构的石英衬底上。C衍生物表现出比母体染料更低的激光阈值以及高达三个数量级的激光强度。