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Hot Carrier-Induced Tautomerization within a Single Porphycene Molecule on Cu(111)

机译:Cu(111)上单卟啉分子内热载体诱导的互变异构

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Here, we report the study of tautomerization within a single porphycene molecule adsorbed on a Cu(111) surface using low-temperature scanning tunneling microscopy (STM) at 5 K. While molecules are adsorbed on the surface exclusively in the thermodynamically stable trans tautomer after deposition, a voltage pulse from the STM can induce the unidirectional trans -> cis and reversible cis <-> cis tautomerization. From the voltage and current dependence of the tautomerization yield (rate), it is revealed that the process is induced by vibrational excitation via inelastic electron tunneling. However, the metastable cis molecules are thermally switched back to the trans tautomer by heating the surface up to 30 K. Furthermore, we have found that the unidirectional tautomerization can be remotely controlled at a distance from the STM tip. By analyzing the nonlocal process in dependence on various experimental parameters, a hot carrier-mediated mechanism is identified, in which hot electrons (holes) generated by the STM travel along the surface and induce the tautomerization through inelastic scattering with a molecule. The bias voltage and coverage dependent rate of the nonlocal tautomerization clearly show a significant contribution of the Cu(111) surface state to the hot carrier-induced process.
机译:在这里,我们报告了在5 K下使用低温扫描隧道显微镜(STM)吸附在Cu(111)表面上的单个卟啉分子内的互变异构化的研究。而分子仅在热力学稳定的互变异构体之后吸附在表面上沉积时,来自STM的电压脉冲可以诱导单向反式->顺式和可逆的顺式->顺式互变异构。从互变异构化产率(速率)的电压和电流依赖性,揭示了该过程是由经由非弹性电子隧穿的振动激发引起的。然而,通过将表面加热到30 K,亚稳态顺式分子被热切换回反式互变异构体。此外,我们发现单向互变异构可以在距STM尖端一定距离处进行远程控制。通过根据各种实验参数分析非局部过程,确定了热载流子介导的机制,其中STM产生的热电子(空穴)沿着表面传播,并通过与分子的非弹性散射诱导互变异构。非局部互变异构的偏压和覆盖率依赖率清楚地表明Cu(111)表面态对热载流子诱导过程的重要贡献。

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