Institut für Physikalische und Theoretische Chemie, Universität Würzburg, Am Hubland, 97074 Würzburg, Germany.
J Am Chem Soc. 2010 Nov 24;132(46):16510-9. doi: 10.1021/ja1062746. Epub 2010 Nov 3.
We report on bidirectional photochemical switching of 6,8-dinitro-1',3',3'-trimethylspiro[2H-1-benzopyran-2,2'-indoline] (6,8-dinitro-BIPS) between the ring-closed spiropyran and the ring-open merocyanine form. This is studied by femtosecond three-color pump-repump-probe experiments. Both ring opening and ring closure are photoinduced. Completion of an entire cycle, consisting of opening and subsequent closure, can be achieved within 40 ps. A much shorter time (<6 ps) is needed for the converse cycle, consisting of initial ring closure and subsequent ring opening. Furthermore, we perform pump-probe experiments with ultraviolet/visible pump and visible/mid-infrared probe pulses for an unambiguous spectroscopic identification of the open and closed molecular forms. Following visible excitation of the ring-open molecules, ultrafast ring closure is observed directly in the mid-infrared. The quantum efficiencies for ring opening and ring closure starting from the respective equilibirum states are determined to be approximately 9% and 40%. These results show that 6,8-dinitro-BIPS is an ultrafast bidirectional molecular switch exhibiting a high quantum efficiency.
我们报告了 6,8-二硝基-1',3',3'-三甲基螺[2H-1-苯并吡喃-2,2'-吲哚](6,8-二硝基-BIPS)在闭环螺吡喃和开环次甲基菁形式之间的双向光化学开关。这是通过飞秒三波长泵浦-重泵-探测实验研究的。环的打开和闭合都是光诱导的。一个完整的循环,包括打开和随后的闭合,可以在 40 ps 内完成。相反的循环,包括初始环闭合和随后的环打开,需要更短的时间(<6 ps)。此外,我们进行了带有紫外/可见泵浦和可见/中红外探针脉冲的泵浦-探测实验,以明确识别开环和闭环分子形式。在开环分子的可见激发后,直接在中红外中观察到超快的环闭合。从相应的平衡态开始的环打开和环闭合的量子效率分别确定为约 9%和 40%。这些结果表明,6,8-二硝基-BIPS 是一种超快双向分子开关,具有较高的量子效率。