Geist Fabian, Jackel Andrej, Winter Rainer F
Fachbereich Chemie der Universität Konstanz , Universitätsstraße 10, D-78464 Konstanz, Germany.
Inorg Chem. 2015 Nov 16;54(22):10946-57. doi: 10.1021/acs.inorgchem.5b01969. Epub 2015 Nov 5.
Four new 4,4-difluoro-4-bora-3a,4a-diaza-s-indacen-8-yl (BODIPY) platinum(II) complexes of the type cis-/trans-Pt(BODIPY)Br(PR3)2 (R = Et or Ph) were synthesized and characterized by NMR, electronic absorption, and luminescence spectroscopy. Three of the complexes were also studied by single crystal X-ray diffraction. The absorption profiles of the four complexes feature intense HOMO → LUMO π → π* transitions with molar extinction coefficients ε of ca. 50 000 M(-1)cm(-1) at around 475 nm and vibrational progressions that are characteristic of BODIPYs. Most remarkably, most complexes exhibit dual emissions through fluorescence at ca. 490 nm and phosphorescence at ca. 650 nm that originate from Pt-perturbed BODIPY-centered (1)ππ* or (3)ππ* states, respectively. Electronic absorption and luminescence spectroscopy data are in good agreement with our TD-DFT calculations. While the emission of the cis-complexes is dominated by fluorescence, their trans-isomers emit predominantly through phosphorescence with a phosphorescence quantum yield for trans-Pt(BODIPY)Br(PEt3)2 (trans-1) of 31.2%. trans-1 allows for ratiometric one-component oxygen sensing in fluid solution up to atmospheric concentration levels and exhibits a remarkably high Stern-Volmer constant for the quenching of the excited triplet state by oxygen of ca. 350 bar(-1) as determined by changes in phosphorescence intensity and lifetime.
合成了四种新型的顺式/反式-Pt(BODIPY)Br(PR3)2(R = 乙基或苯基)类型的4,4-二氟-4-硼-3a,4a-二氮杂-s-茚并[1,2-b]吡啶(BODIPY)铂(II)配合物,并通过核磁共振、电子吸收和发光光谱对其进行了表征。其中三种配合物还通过单晶X射线衍射进行了研究。这四种配合物的吸收光谱具有强烈的HOMO→LUMO π→π跃迁,在约475 nm处的摩尔消光系数ε约为50000 M(-1)cm(-1),并且具有BODIPY特有的振动进程。最显著的是,大多数配合物通过约490 nm处的荧光和约650 nm处的磷光表现出双重发射,分别源自Pt扰动的以BODIPY为中心的(1)ππ或(3)ππ*态。电子吸收和发光光谱数据与我们的TD-DFT计算结果吻合良好。虽然顺式配合物的发射以荧光为主,但其反式异构体主要通过磷光发射,反式-Pt(BODIPY)Br(PEt3)2(反式-1)的磷光量子产率为31.2%。反式-1可在流体溶液中实现高达大气浓度水平的比例式单组分氧传感,并且对于氧气猝灭激发三重态表现出高达约350 bar(-1)的显著高的斯特恩-沃尔默常数,这是通过磷光强度和寿命的变化确定的。