单分子连接中路易斯酸介导的反应性

IF 15.6 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Jazmine Prana, Leopold Kim, Thomas M. Czyszczon-Burton, Grace Homann, Sully F. Chen, Zelin Miao, María Camarasa-Gómez, Michael S. Inkpen
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引用次数: 0

摘要

虽然金电极上的化学反应可以利用分子电导进行监测,并由外在刺激驱动,但纳米结构界面的内在特性可能会发挥尚未充分了解的重要附加功能。在这里,我们通过研究由 4,4′-联苯骨架与 12 个不同的硫基连接基团官能化而形成的单分子结组成的成分,对这些特性进行了评估。对于某些连接基团,我们发现了原位 S-C(sp3)键断裂和 C(sp2)-C(sp3)键形成的证据,这些反应与这些基团在路易斯酸存在下的原位转化预期一致。值得注意的是,我们还接近了取代基对物理吸附硫连接电导的影响极限。举例说明,我们发现一种叔丁基硫功能化前体既能形成化学吸附(Au-S)连接,这与异溶解 S-C(sp3)键裂解和生成稳定的叔丁基碳位化合物相一致,也能形成物理吸附连接,其电导率比包含环状 "锁定 "硫醚接触的类似连接低 1 个数量级。对由中等大小的不同简单碳氢取代基组成的模型硫醚成分进行的系统分析支持了这些发现,这些硫醚成分不会形成化学吸附接触,并进一步阐明了电导与取代基立体体积之间的反比关系。第一性原理计算证实,笨重的硫取代基增加了形成结几何形状的概率,降低了电极与 π 共轭分子骨架之间的电子耦合。总之,这项工作有助于合理解释链接化学结构和金属电极路易斯特性在断交实验中介导界面反应的双重作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Lewis-Acid Mediated Reactivity in Single-Molecule Junctions

Lewis-Acid Mediated Reactivity in Single-Molecule Junctions
While chemical reactions at a gold electrode can be monitored using molecular conductance and driven by extrinsic stimuli, the intrinsic properties of the nanostructured interface may perform important additional functions that are not yet well understood. Here we evaluate these properties in studies of single-molecule junctions formed from components comprising 4,4′-biphenyl backbones functionalized with 12 different sulfur-based linker groups. With some linkers, we find evidence for in situ S–C(sp3) bond breaking, and C(sp2)–C(sp3) bond forming, reactions consistent with the ex situ transformations expected for those groups in the presence of a Lewis acid. Notably, we also approach the limits of substituent influence on the conductance of physisorbed sulfur-linked junctions. As an illustrative example, we show that a tert-butylthio-functionalized precursor can form both chemisorbed (Au–S) junctions, consistent with heterolytic S–C(sp3) bond cleavage and generation of a stable tert-butyl carbocation, as well as physisorbed junctions that are >1 order of magnitude lower conductance than analogous junctions comprising cyclic “locked” thioether contacts. These findings are supported by a systematic analysis of model thioether components comprising different simple hydrocarbon substituents of intermediate size, which do not form chemisorbed contacts and further clarify the inverse relationship between conductance and substituent steric bulk. First-principles calculations confirm that bulky sulfur-substituents increase the probability of forming junction geometries with reduced electronic coupling between the electrode and π-conjugated molecular backbone. Together, this work helps to rationalize the dual roles that linker chemical structure and metal electrode Lewis character can play in mediating interfacial reactions in break-junction experiments.
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来源期刊
CiteScore
24.40
自引率
6.00%
发文量
2398
审稿时长
1.6 months
期刊介绍: The flagship journal of the American Chemical Society, known as the Journal of the American Chemical Society (JACS), has been a prestigious publication since its establishment in 1879. It holds a preeminent position in the field of chemistry and related interdisciplinary sciences. JACS is committed to disseminating cutting-edge research papers, covering a wide range of topics, and encompasses approximately 19,000 pages of Articles, Communications, and Perspectives annually. With a weekly publication frequency, JACS plays a vital role in advancing the field of chemistry by providing essential research.
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