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通过控制电荷态进行分子结构解析。

Molecular structure elucidation with charge-state control.

机构信息

IBM Research-Zurich, Rueschlikon 8803, Switzerland.

ExxonMobil Research and Engineering Company, Annandale, NJ 08801, USA.

出版信息

Science. 2019 Jul 12;365(6449):142-145. doi: 10.1126/science.aax5895.

Abstract

The charge state of a molecule governs its physicochemical properties, such as conformation, reactivity, and aromaticity, with implications for on-surface synthesis, catalysis, photoconversion, and applications in molecular electronics. On insulating, multilayer sodium chloride (NaCl) films, we controlled the charge state of organic molecules and resolved their structures in neutral, cationic, anionic, and dianionic states by atomic force microscopy, obtaining atomic resolution and bond-order discrimination using carbon monoxide (CO)-functionalized tips. We detected changes in conformation, adsorption geometry, and bond-order relations for azobenzene, tetracyanoquinodimethane, and pentacene in multiple charge states. Moreover, for porphine, we investigate the charge state-dependent change of aromaticity and conjugation pathway in the macrocycle. This work opens the way to studying chemical-structural changes of individual molecules for a wide range of charge states.

摘要

分子的电荷状态决定了其物理化学性质,如构象、反应性和芳香性,这对表面合成、催化、光转化以及在分子电子学中的应用都有影响。在绝缘的多层氯化钠(NaCl)薄膜上,我们通过原子力显微镜控制有机分子的电荷状态,并在中性、阳离子、阴离子和二价阴离子状态下解析它们的结构,使用一氧化碳(CO)功能化的针尖获得原子分辨率和键序分辨。我们检测到在多个电荷状态下偶氮苯、四氰基对醌二甲烷和并五苯的构象、吸附几何形状和键序关系的变化。此外,对于卟啉,我们研究了大环中芳香性和共轭途径随电荷状态的变化。这项工作为研究各种电荷状态下单个分子的化学结构变化开辟了道路。

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