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首页> 外文期刊>Chemistry: A European journal >Ultrafast excited state dynamics controlling photochemical isomerization of N-methyl-4-[trans-2-(4-pyridyl)ethenyl]pyridinium coordinated to a {Re-1(CO)(3)(2,2 '-bipyridine)} chromophore
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Ultrafast excited state dynamics controlling photochemical isomerization of N-methyl-4-[trans-2-(4-pyridyl)ethenyl]pyridinium coordinated to a {Re-1(CO)(3)(2,2 '-bipyridine)} chromophore

机译:超快激发态动力学,控制与{Re-1(CO)(3)(2,2'-bipyridine)}发色团配合的N-甲基-4- [反式-2-(4-吡啶基)乙烯基]吡啶鎓的光化学异构化

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摘要

Two Multifunctional photoactive complexes [Re(Cl)(CO)(3)-(MeDpe(+))(2)](2+) and [Re(MeDpe(+))(CO)(3)(bpy)](2+) (MeDpe(+) = N-methyl-4-[trans-2-(4-pyridyl)ethenyl]pyridinium, bpy = 2,2'-bipyridine) were synthesized. characterized. and their redox and photonic properties were investigated by cyclic voltammetry: ultraviolet-visible-infrared (UV/Vis/IR) spectroelectrochemistry, stationary UV/Vis and resonance Raman spectroscopy; photolysis; picosecond time-resolved absorption spectroscopy in the visible and infrared regions: and time-resolved resonance Raman spectroscopy. The first reduction step of either complex Occurs at about -1.1 V versus Fc/Fc(+) and is localized at MeDpe(+). Reduction alone does not induce a trans -> cis isomerization of MeDpe(+). [Re(Cl)(CO)(3)(MeDPe(+))(2)](2+) is photostable, while [Re(MeDpe(+))(CO)(3)(bpy)](2+) and free MeDpe(+) isomerize under near-UV irradiation. The lowest excited state of [Re(Cl)(CO)(3)(MeDPe(+))(2)](2+) has been identified as the Re(Cl)(CO)(3) -> MeDpe(+) (MLCT)-M-3 (MLCT = metal-to-ligand charge transfer), decaying directly to the ground state with lifetimes of approximate to 42 (73%) and approximate to 430ps (27%). Optical excitation of [Re(MeDpe(+))(CO)(3)(bpy)](2+) leads to population of Re(CO)(3) -> MeDpe(+) and Re(CO)(3) -> bpy (MLCT)-M-3 states, from which a MeDpe(+) localized intraligand 3 pi pi* excited state ((IL)-I-3) is populated with lifetimes of approximate to 0.6 and approximate to 10 ps, respectively. The 3IL state undergoes a approximate to 21 ps internal rotation, which eventually produces the cis isomer on a much longer timescale. The different excited-state behavior of the two complexes and the absence of thermodynamically favorable interligand electron transfer in excited [Re(MeDpe(+))(CO)(3)(bpy)](2+) reflect the fine energetic balance between excited states of different orbital origin, which can be tuned by subtle Structural variations. The complex [Re(MeDpe+)(CO)(3)(bpy)](2+) emerges as a prototypical, multifunctional species with complementary redox and photonic behavior.
机译:两种多功能光敏复合物[Re(Cl)(CO)(3)-(MeDpe(+))(2)](2+)和[Re(MeDpe(+))(CO)(3)(bpy)]( 2+)(MeDpe(+)= N-甲基-4- [反式-2-(4-吡啶基)乙烯基]吡啶鎓,bpy = 2,2'-联吡啶)。表征。并通过循环伏安法研究了它们的氧化还原和光子性质:紫外-可见-红外(UV / Vis / IR)光谱电化学,固定UV / Vis和共振拉曼光谱。光解可见光和红外区的皮秒时间分辨吸收光谱:以及时间分辨共振拉曼光谱。与Fc / Fc(+)相比,任一复合物的第一步还原步骤均在约-1.1 V下发生,并位于MeDpe(+)处。单独的还原不会诱导MeDpe(+)的反式->顺式异构化。 [Re(Cl)(CO)(3)(MeDPe(+))(2)](2+)是光稳定的,而[Re(MeDpe(+))(CO)(3)(bpy)](2+ )和游离MeDpe(+)在近紫外线照射下异构化。 [Re(Cl)(CO)(3)(MeDPe(+))(2)](2+)的最低激发态已确定为Re(Cl)(CO)(3)-> MeDpe(+ )(MLCT)-M-3(MLCT =金属到配体的电荷转移),直接衰减到基态,寿命约为42(73%)和430ps(27%)。 [Re(MeDpe(+))(CO)(3)(bpy)](2+)的光激发导致Re(CO)(3)-> MeDpe(+)和Re(CO)(3)的填充-> bpy(MLCT)-M-3状态,其中填充了MeDpe(+)局部配体3 pi pi *激发态((IL)-I-3),其寿命约为0.6到10 ps,分别。 3IL状态经历大约21 ps的内部旋转,最终在更长的时间范围内产生顺式异构体。两种配合物的激发态行为不同,并且在激发的[Re(MeDpe(+))(CO)(3)(bpy)](2+)中没有热力学上有利的配体电子转移,这反映了激发态之间的良好能量平衡轨道起源不同的状态,可以通过微妙的结构变化进行调整。复杂的[Re(MeDpe +)(CO)(3)(bpy)](2+)作为具有互补氧化还原和光子行为的原型,多功能物质出现。

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