Gutiérrez Mario, Sánchez Félix, Douhal Abderrazzak
Departamento de Química Física, Facultad de Ciencias Ambientales y Bioquímica and INAMOL, Universidad de Castilla-La Mancha, Avenida Carlos III, S.N., 45071, Toledo, Spain.
Instituto de Química Orgánica, Consejo Superior de Investigaciones Cientificas (CSIC), C/Juan de la Cierva, 3, 28006, Madrid, Spain.
Chemistry. 2016 Sep 5;22(37):13072-82. doi: 10.1002/chem.201600669. Epub 2016 Jul 12.
The spectroscopy and dynamics of a series of Zr-based MOFs in dichloromethane suspension are reported. These Zr-NADC MOFs were constructed by using different mixtures of 2,6-naphthalenedicarboxylate (NDC) and 4-amino-2,6-naphthalenedicarboxylate (NADC) as organic linkers. The fraction of NADC relative to NDC in these heterolinker MOFs ranges from 2 to 35 %. The results indicate two competitive photoprocesses: NDC excimer formation and an energy transfer (ET) from excited NDC linkers to NADC linkers. Increasing the fraction of NADC linkers in the Zr-NADC nanostructure decreases the mean time constant of NDC excimer formation, while the NADC emission intensity experiences a drop at the highest fraction of this linker in the MOF. The first observation is explained by an increase in the energy-transfer probability between the two linkers, and the second by emission quenching in the NADC linkers due to ultrafast charge transfer assisted by the amino group. Femtosecond time-resolved emission studies showed that the ET process (recorded as decaying and rising components) from excited NDC to NADC takes place in 1.2 ps. Direct excitation of the NADC linkers (at 410 nm) shows a decaying, but not rising, component of 250-480 fs, which could reflect the formation of a nonemissive charge-separation state. The results show that by using MOFs having heterolinkers it is possible to trigger and tune excimer formation and ET processes.
报道了一系列基于锆的金属有机框架(MOF)在二氯甲烷悬浮液中的光谱学和动力学。这些锆 - NADC MOF是通过使用2,6 - 萘二甲酸酯(NDC)和4 - 氨基 - 2,6 - 萘二甲酸酯(NADC)的不同混合物作为有机连接体构建而成。在这些异质连接体MOF中,NADC相对于NDC的比例范围为2%至35%。结果表明存在两个相互竞争的光过程:NDC准分子形成以及从激发态的NDC连接体到NADC连接体的能量转移(ET)。增加Zr - NADC纳米结构中NADC连接体的比例会降低NDC准分子形成的平均时间常数,而在MOF中该连接体比例最高时,NADC发射强度会下降。第一个观察结果可通过两个连接体之间能量转移概率的增加来解释,第二个结果则是由于氨基辅助的超快电荷转移导致NADC连接体中的发射猝灭。飞秒时间分辨发射研究表明,从激发态的NDC到NADC的ET过程(记录为衰减和上升分量)在1.2皮秒内发生。对NADC连接体(在410纳米处)的直接激发显示出250 - 480飞秒的衰减分量,但没有上升分量,这可能反映了非发射电荷分离态的形成。结果表明,通过使用具有异质连接体的MOF,可以触发和调节准分子形成和ET过程。