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首页> 外文期刊>New Journal of Chemistry >Rational synthetic design of well-defined Pt(bisethynyl)/Zn(porphyrin) oligomers for potential applications in photonics
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Rational synthetic design of well-defined Pt(bisethynyl)/Zn(porphyrin) oligomers for potential applications in photonics

机译:明确定义的Pt(双乙炔基)/ Zn(卟啉)低聚物的合理合成设计,可在光子学中应用

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摘要

Well-defined oligomers of 1, 2, 3 and 4 units built upon the very soluble bis-1,15-(1,4-ethynylbenzene)-3,7,13,17-tetramethyl-2,8,12,18-tetrakis(n-hexyl) zinc(II) porphyrin ligand and the trans-bis(tri-n-butylphosphine)platinum(II) linker, with acetylene or trimethylsilane as end groups, has been prepared in the presence of a dichloromethane/diethylamine mixture (1 : 1 v/v) and CuX (X = Cl, I) at room temperature, analogue to a Sonogashira coupling. The new monodisperse organometallic oligomers were characterized by ~1H, ~(31)P NMR, UV-visible spectroscopies and MALDI-TOF mass spectrometry. The methyl groups placed at the 3,7,13,17-positions induces the locking of the C6H4 fragment in a perpendicular conformation with respect to the zinc(II) porphyrin chromophore, hence removing conjugation as corroborated by the almost total absence of spectral shift of the Soret and Q-bands upon increasing the number of units. Despite this feature, exciton coupling in the Soret band is noted at both room temperature and 77 K. The photophysical parameters, fluorescence lifetimes and quantum yields are practically constant going from the monomer, dimer and tetramer, and as a function of the monitored fluorescence wavelength, all indicating that the excitonic behavior (excitation energy delocalization) is minimal, which is consistent with the weak exciton coupling constants and the lack of conjugation of the π-system. The synthetic methodology can provide longer well-defined oligomers as the presented products were still very soluble even when the number of unit was 4.
机译:在非常易溶的bis-1,15-(1,4-乙炔基苯)-3,7,13,17-tetramethyl-2,8,12,18-上建立1、2、3和4个单元的明确定义的低聚物在二氯甲烷/二乙胺混合物的存在下,制备了四(正己基)锌(II)卟啉配体和以乙炔或三甲基硅烷为端基的反式双(三正丁基膦)铂(II)接头(1:1 v / v)和CuX(X = Cl,I)在室温下,类似于Sonogashira耦合。新的单分散有机金属低聚物的特征在于〜1H,〜(31)P NMR,紫外可见光谱和MALDI-TOF质谱。放置在3、7、13、17位的甲基可诱导C6H4片段锁定在相对于锌卟啉发色团呈垂直构象的位置,从而消除了共轭现象,因为几乎完全没有光谱偏移增加单位数后,Soret和Q波段的变化。尽管有此功能,但在室温和77 K时都注意到Soret谱带中的激子耦合。光物理参数,荧光寿命和量子产率实际上是恒定的,取决于单体,二聚体和四聚体,并且是所监测的荧光波长的函数,所有都表明激子行为(激发能离域)极小,这与弱的激子耦合常数和π系统共轭的缺乏相一致。合成方法可提供更长的定义明确的低聚物,因为即使当单元数为4时,所提供的产物仍然非常易溶。

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