Effect of tert-Butyl Substitution on the Interactions of Cobalt Phthalocyanine with a Carbon Monoxide-Functionalized Tip

IF 4.6 2区 化学 Q2 CHEMISTRY, PHYSICAL The Journal of Physical Chemistry Letters Pub Date : 2025-04-04 DOI:10.1021/acs.jpclett.5c00414
Xinzhe Wang, Percy Zahl, Miguel Wiche, Hailiang Wang, Eric I. Altman, Udo D. Schwarz
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Abstract

Supported cobalt phthalocyanines (CoPc) are promising catalysts for CO2 reduction, a critical process for mitigating greenhouse gas emissions. Enhancing the catalytic performance of CoPc involves modifying the interaction between the cobalt center and intermediate species. This study focuses on the effects of tert-butyl substitution on CoPc using (tert-butyl)4CoPc, where the substitution can both directly alter the molecule’s intramolecular electronic structure and indirectly alter it by the bulky group weakening the interaction with the support. Toward this end, we investigated the structural and chemical properties of (tert-butyl)4CoPc on a Ag(111) surface at the single-molecule level using three-dimensional atomic force microscopy (AFM) with a CO-terminated tip and discussed them in comparison with data for unmodified CoPc and amino-substituted CoPc. Notably, distance-dependent force measurements revealed anomalies in the tert-butyl groups’ force curves, attributed to their rotational flexibility. The tert-butyl (t-butyl) groups were also observed to increase the attraction of the central Co atom to CO, but this effect was attributed largely to enhanced interactions of the back of the tip with the peripheral t-butyl groups. While this longer-range interaction would not be expected to impact the interaction of small molecules with the catalytic center, the results reveal the ability of AFM to characterize longer range environmental interactions that can enhance adsorption and subsequent reactions of larger molecules, as well as the role side chains that offer configurational adaptability may play in these interactions.

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叔丁基取代对酞菁钴与一氧化碳功能化尖端相互作用的影响
支持型酞菁钴(CoPc)是一种很有前景的二氧化碳减排催化剂,这是减少温室气体排放的关键过程。提高CoPc的催化性能涉及到改变钴中心与中间体之间的相互作用。本研究的重点是使用(叔丁基)4CoPc取代叔丁基对CoPc的影响,其中取代既可以直接改变分子的分子内电子结构,也可以通过庞大的基团削弱与载体的相互作用间接改变分子内电子结构。为此,我们在单分子水平上利用尖端为co端的三维原子力显微镜(AFM)研究了Ag(111)表面(叔丁基)4CoPc的结构和化学性质,并与未修饰的CoPc和氨基取代的CoPc进行了比较。值得注意的是,距离相关的力测量揭示了叔丁基的力曲线异常,这归因于它们的旋转灵活性。叔丁基(t-butyl)也被观察到增加中心Co原子对Co的吸引力,但这种效应主要归因于尖端后部与周围t-丁基的相互作用增强。虽然这种较长距离的相互作用不会影响小分子与催化中心的相互作用,但研究结果揭示了AFM表征较长距离环境相互作用的能力,这种相互作用可以增强大分子的吸附和随后的反应,以及提供构型适应性的侧链可能在这些相互作用中发挥的作用。
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来源期刊
The Journal of Physical Chemistry Letters
The Journal of Physical Chemistry Letters CHEMISTRY, PHYSICAL-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
9.60
自引率
7.00%
发文量
1519
审稿时长
1.6 months
期刊介绍: The Journal of Physical Chemistry (JPC) Letters is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, chemical physicists, physicists, material scientists, and engineers. An important criterion for acceptance is that the paper reports a significant scientific advance and/or physical insight such that rapid publication is essential. Two issues of JPC Letters are published each month.
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