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用于控制硅表面含硼单层的溶液化学:硼酸和4-氟苯硼酸与氢和氯端基化Si(100)的反应

Solution Chemistry to Control Boron-Containing Monolayers on Silicon: Reactions of Boric Acid and 4-Fluorophenylboronic Acid with H- and Cl-terminated Si(100).

作者信息

Silva-Quinones Dhamelyz, Butera Robert E, Wang George T, Teplyakov Andrew V

机构信息

Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, United States.

Laboratory for Physical Sciences, College Park, Maryland 20740, United States.

出版信息

Langmuir. 2021 Jun 15;37(23):7194-7202. doi: 10.1021/acs.langmuir.1c00763. Epub 2021 Jun 1.

Abstract

The reactions of boric acid and 4-fluorophenylboronic acid with H- and Cl-terminated Si(100) surfaces in solution were investigated. X-ray photoelectron spectroscopy (XPS) studies reveal that both molecules react preferentially with Cl-Si(100) and not with H-Si(100) at identical conditions. On Cl-Si(100), the reactions introduce boron onto the surface, forming a Si-O-B structure. The quantification of boron surface coverage demonstrates that the 4-fluorophenylboronic acid leads to ∼2.8 times higher boron coverage compared to that of boric acid on Cl-Si(100). Consistent with these observations, density functional theory studies show that the reaction of boric acid and 4-fluorophenylboronic acid is more favorable with the Cl- versus H-terminated surface and that on Cl-Si(100) the reaction with 4-fluorophenylboronic acid is ∼55.3 kJ/mol more thermodynamically favorable than the reaction with boric acid. The computational studies were also used to demonstrate the propensity of the overall approach to form high-coverage monolayers on these surfaces, with implications for selective-area boron-based monolayer doping.

摘要

研究了硼酸和4-氟苯硼酸在溶液中与氢端和氯端终止的Si(100)表面的反应。X射线光电子能谱(XPS)研究表明,在相同条件下,这两种分子都优先与Cl-Si(100)反应,而不与H-Si(100)反应。在Cl-Si(100)上,反应将硼引入表面,形成Si-O-B结构。硼表面覆盖率的定量分析表明,与Cl-Si(100)上的硼酸相比,4-氟苯硼酸导致的硼覆盖率高出约2.8倍。与这些观察结果一致,密度泛函理论研究表明,硼酸和4-氟苯硼酸与氯端终止表面的反应比与氢端终止表面的反应更有利,并且在Cl-Si(100)上,与4-氟苯硼酸的反应在热力学上比与硼酸的反应更有利约55.3 kJ/mol。计算研究还用于证明该整体方法在这些表面上形成高覆盖率单层的倾向,这对基于硼的选择性区域单层掺杂具有重要意义。

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