Marwitz Alexander C, Dutta Anuj K, Conner Robin L, Sanz Lulio A, Jacobsohn Luiz G, Knope Karah E
Department of Chemistry, Georgetown University, Washington, District of Columbia 20057, United States of America.
Department of Materials Science and Engineering, Clemson University, Clemson, South Carolina 29634, United States of America.
Inorg Chem. 2024 Jun 17;63(24):11053-11062. doi: 10.1021/acs.inorgchem.4c00606. Epub 2024 Jun 1.
Three novel bismuth-organic compounds, with the general formula [Bi(HPDC)(PDC)]·(arene)·2HO (HPDC = 2,6-pyridinedicarboxylic acid; arene = pyrene, naphthalene, and azulene), that consist of neutral dinuclear Bi-pyridinedicarboxylate complexes and outer coordination sphere arene molecules were synthesized and structurally characterized. The structures of all three phases exhibit strong π-π stacking interactions between the Bi-bound PDC/HPDC and outer sphere organic molecules; these interactions effectively sandwich the arene molecules between bismuth complexes and thereby prevent molecular vibrations. Upon UV irradiation, the compounds containing pyrene and naphthalene displayed red and green emission, respectively, with quantum yields of 1.3(2) and 30.8(4)%. The emission was found to originate from the T → S transition of the corresponding arene and result in phosphorescence characteristic of the arene employed. By comparison, the azulene-containing compound displayed very weak blue-purple phosphorescence of unknown origin and is a rare example of T → S emission from azulene. The pyrene- and naphthalene-containing compounds both display radioluminescence, with intensities of 11 and 38% relative to bismuth germanate, respectively. Collectively, these results provide further insights into the structure-property relationships that underpin luminescence from Bi-based materials and highlight the utility of Bi-organic molecules in the realization of organic emission.
合成并表征了三种新型铋有机化合物,其通式为[Bi(HPDC)(PDC)]·(芳烃)·2H₂O(HPDC = 2,6 - 吡啶二甲酸;芳烃 = 芘、萘和薁),它们由中性双核铋吡啶二甲酸酯配合物和外配位层芳烃分子组成。所有三个相的结构在铋结合的PDC/HPDC与外层有机分子之间均表现出强烈的π - π堆积相互作用;这些相互作用有效地将芳烃分子夹在铋配合物之间,从而防止分子振动。在紫外线照射下,含芘和萘的化合物分别发出红色和绿色荧光,量子产率分别为1.3(2)%和30.8(4)%。发现该荧光源于相应芳烃的T → S跃迁,并产生所用芳烃的磷光特性。相比之下,含薁的化合物发出非常微弱的蓝紫色磷光,其来源未知,是薁的T → S发射的罕见例子。含芘和萘的化合物均显示出放射性发光,相对于锗酸铋的强度分别为11%和38%。总的来说,这些结果进一步深入了解了支撑铋基材料发光的结构 - 性质关系,并突出了铋有机分子在实现有机发射方面的实用性。