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Electron spin polarization in an Al(III) porphyrin complex with an axially bound nitroxide radical

机译:在Al(III)卟啉络合物中的电子自旋偏振,具有轴向结合的硝基氧化物

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The generation and transfer of electron spin polarization and coherence plays an important role in quantum information technologies and spintronics. In this context, the excited state spin dynamics of molecular systems in which a stable free radical is attached to a chromophore are of particular interest. In such complexes, the coupling between the electron spin on the free radical with those on the chromophore generates excited states referred to as sing-doublet, trip-doublet, and trip-quartet. Here, we study the light-induced electron spin polarization in an aluminum(III) porphyrin (AlPor) complex in which the nitroxide (2,2,6,6-tetramethylpiperidin-1-yl)oxyl (TEMPO) is covalently bound to the Al center via an ester linkage. In addition to the covalent bond to the TEMPO moiety, the Al center in AlPor also acts as a Lewis acid and can coordinate Lewis bases such as pyridine. Without pyridine bound, the spin polarized transient electron paramagnetic resonance spectrum of the complex at 80 K is unusual and displays a strong absorptive pattern with a Lorentzian lineshape. Coordination of pyridine to AlPor-TEMPO results in a dramatic change in the spin polarization pattern and a spectrum typical of the quartet state with broad wings from the ms = +/- 1/2 <->+/- 3/2 transitions with emissive/absorptive polarization and a narrow absorptive peak from the m(s) = +/- 1/2 <->+/- 1/2 transitions. At later times, the pattern evolves to a purely absorptive spectrum similar to that observed without pyridine. These changes are discussed in terms of a model in which back and forth transitions between the nearly degenerate lowest trip-doublet and trip-quartet states occur. It is argued that these transitions lead to the observed net polarization in AlPor-TEMPO and are fast enough that the outer lines are broadened. Density functional theory computations and the UV/Vis spectra suggest that the exchange interaction between TEMPO and the triplet state of AlPor increases when pyridine is bound, and the near degeneracy of the lowest excited states is lifted. It is argued that this slows the back and forth transitions which results in the strong change in the polarization pattern. Published under license by AIP Publishing.
机译:电子自旋极化和相干性的产生和转移在量子信息技术和闪蒸中起着重要作用。在这种情况下,分子系统的激发态自旋动态,其中将稳定的自由基连接到发色团中特别感兴趣。在这样的配合物中,电子旋转与发色团上的自由基之间的偶联产生激发状态,称为Sing-Doublet,Trip-Doublet和跳闸四重奏。这里,我们研究了铝(III)卟啉(ALP)复合物中的光诱导的电子自旋极化,其中硝基氧化物(2,2,6,6-四甲基哌啶-1-基)氧基(TEMPO)与氧基(2,2,6,6-四甲基哌啶-1-基)共价结合Al中心通过酯联动。除了与节奏部分的共价键外,Alpor中的Al中心还可作为路易斯酸,可以协调吡啶等Lewis碱。没有吡啶结合,在80 k处的复合物的自旋极化瞬态电子顺磁共振谱是不寻常的,并且具有带有Lorentzian Lineshape的强吸收图案。吡啶与Alpor-Tempo的协调导致自旋极化图案的显着变化和典型的距翼的典型型从MS = +/- 1/2 +/- 3/2的发射发射/吸收偏振和来自m(s)= +/- 1/2 +/- 1/2转变的窄吸收峰。在后来的时间,该模式演变为类似于没有吡啶的不具有观察到的纯吸收光谱。这些改变是根据模型讨论的,其中近退化的最低旅行双峰和行程状态之间的前后转换。有人认为,这些过渡导致ALPOT-TEMPO中观察到的净偏振,并且足够快,即外线被扩展。密度函数理论计算和UV / VI光谱表明,当吡啶结合时,速度和三重态的交换相互作用增加,并且提升了最低激发态的接近退化。有人认为,这减慢了来回转变,这导致极化模式的强大变化。通过AIP发布在许可证下发布。

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