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Near-infrared photoabsorption by C_(60) dianions in a storage ring

机译:C_(60)阴离子在存储环中的近红外光吸收

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We present a detailed study of the electronic structure and the stability of C60 dianions in the gas phase. Monoanions were extracted from a plasma source and converted to dianions by electron transfer in a Na vapor cell. The dianions were then stored in an electrostatic ring, and their near-infrared absorption spectrum was measured by observation of laser induced electron detachment. From the time dependence of the detachment after photon absorption, we conclude that the reaction has contributions from both direct electron tunneling to the continuum and vibrationally assisted tunneling after internal conversion. This implies that the height of the Coulomb barrier confining the attached electrons is at least - 1.5 eV. For C_(60)~(2-) ions in solution electron spin resonance measurements have indicated a singlet ground state, and from the similarity of the absorption spectra we conclude that also the ground state of isolated C_(60)~(2-) ions is singlet. The observed spectrum corresponds to an electronic transition from a t_(1u), lowest unoccupied molecular orbital (LUMO) of C_(60) to the t_(1g) LUMO+ 1 level. The electronic levels of the dianion are split due to Jahn_Teller coupling to quadrupole deformations of the molecule, and a main absorption band at 10723 cm~(-1) corresponds to a transition between the Jahn_Teller ground states. Also transitions from pseudorotational states with 200 cm~(-1) and (probably) 420 cm~(-1) excitation are observed. We argue that a very broad absorption band from about 11 500 cm~(-1) to 13 500 cm~(-1) consists of transitions to so-called cone states, which are Jahn_Teller states on a higher potential-energy surface, stabilized by a pseudorotational angular momentum barrier. A previously observed, high-lying absorption band for C_(60)~- may also be a transition to a cone state.
机译:我们对C60阴离子在气相中的电子结构和稳定性进行了详细的研究。从等离子体源中提取单阴离子,并通过Na蒸气池中的电子转移将其转变为二价阴离子。然后将二价阴离子存储在静电环中,并通过观察激光诱导的电子脱离来测量其近红外吸收光谱。从光子吸收后脱离的时间依赖性,我们得出结论,反应既有直接电子隧穿到连续体的贡献,也有内部转换后振动辅助隧穿的贡献。这意味着限制附着的电子的库仑势垒的高度至少为-1.5 eV。对于溶液中的C_(60)〜(2-)离子,电子自旋共振测量表明其为单重态,根据吸收光谱的相似性,我们得出结论,孤立的C_(60)〜(2-)的基态离子是单峰的。观察到的光谱对应于从t_(1u),C_(60)的最低未占据分子轨道(LUMO)到t_(1g)LUMO + 1的电子跃迁。二价电子的电子能级由于Jahn_Teller耦合到分子的四极变形而分裂,并且在10723 cm〜(-1)处的主吸收带对应于Jahn_Teller基态之间的跃迁。还观察到了从200 cm〜(-1)和(大约)420 cm〜(-1)激发的伪旋转状态的跃迁。我们认为从大约11500 cm〜(-1)到13500 cm〜(-1)的很宽的吸收带由过渡到所谓的锥态构成,该锥态是在较高势能表面上稳定的Jahn_Teller态通过伪旋转角动量屏障。先前观察到的C_(60)-的高吸收带也可能是向锥态的过渡。

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