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首页> 外文期刊>Nature Chemistry >Controlling intramolecular hydrogen transfer in a porphycene molecule with single atoms or molecules located nearby
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Controlling intramolecular hydrogen transfer in a porphycene molecule with single atoms or molecules located nearby

机译:用单个原子或附近的分子控制卟啉分子中的分子内氢转移

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Although the local environment of a molecule can play an important role in its chemistry, rarely has it been examined experimentally at the level of individual molecules. Here we report the precise control of intramolecular hydrogen-transfer (tautomerization) reactions in single molecules using scanning tunnelling microscopy. By placing, with atomic precision, a copper adatom close to a porphycene molecule, we found that the tautomerization rates could be tuned up and down in a controlled fashion, surprisingly also at rather large separations. Furthermore, we extended our study to molecular assemblies in which even the arrangement of the pyrrolic hydrogen atoms in the neighbouring molecule influences the tautomerization reaction in a given porphycene, with positive and negative cooperativity effects. Our results highlight the importance of controlling the environment of molecules with atomic precision and demonstrate the potential to regulate processes that occur in a single molecule.
机译:尽管分子的局部环境可以在其化学过程中发挥重要作用,但很少在单个分子的水平上通过实验对其进行检查。在这里,我们报告使用扫描隧道显微镜在单个分子中的分子内氢转移(互变异构)反应的精确控制。通过以原子精确度将铜原子置于接近卟啉分子的位置,我们发现互变异构率可以受控的方式上下调节,令人惊讶的是,在相当大的分离距离下也是如此。此外,我们将研究扩展到分子组装,其中即使相邻分子中的吡咯氢原子的排列也会影响给定卟啉中的互变异构反应,并具有正和负协同作用。我们的结果强调了以原子精度控制分子环境的重要性,并证明了调节单个分子中发生的过程的潜力。

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