Huynh Ly Thi Minh, Trinh Hoa Duc, Lee Sungwoon, Yoon Sangwoon
Department of Chemistry, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul 06974, Korea.
Nanoscale. 2020 Dec 21;12(47):24062-24069. doi: 10.1039/d0nr07023h. Epub 2020 Nov 27.
Boronic acids are the key compounds in Suzuki coupling reactions and in the detection of monosaccharides. The C-B bond cleavage deboronation is an important side reaction that lowers the Suzuki coupling reaction yield and even disables saccharide detection. Here, we report that protodeboronation occurs for 4-mercaptophenylboronic acid (MPBA) within narrow nanogaps between gold nanoparticles (AuNPs) and planar gold substrates. The irradiation of such nanoparticle-on-mirror (NPoM) systems at 785 nm drives the protodeboronation reaction to form benzenethiol (BT). Wavelength-dependence experiments, combined with dark-field single-particle scattering spectroscopy, reveal that excitation of the bonding dipole plasmon mode of the NPoM leads to the best efficiency. Among the excited plasmon decay pathways, the generation of hot charge carriers induces the protodeboronation of MPBA. The possibility of plasmonic thermal reactions is ruled out because external heating of the substrates does not cause the reaction to take place. A comparison of the reaction yield under ambient, Ar, and oxygen gas conditions reveals that hot charge carriers directly transfer to MPBA, which subsequently produces BT, but the presence of oxygen promotes the reaction by opening another hot-electron transfer channel. The protodeboronation reaction of MPBA is an important addition to the catalog of plasmon-driven chemical reactions, not only because the reaction is relevant to organic and analytical chemistry but also because it deepens our understanding of the hot carrier dynamics at the interface between plasmonic nanoparticles and molecules.
硼酸是铃木耦合反应和单糖检测中的关键化合物。碳 - 硼键断裂的脱硼反应是一个重要的副反应,它会降低铃木耦合反应的产率,甚至使糖类检测失效。在此,我们报道了在金纳米颗粒(AuNP)与平面金基底之间的狭窄纳米间隙内,4 - 巯基苯硼酸(MPBA)发生了质子脱硼反应。在785 nm波长下照射这种镜上纳米颗粒(NPoM)系统会驱动质子脱硼反应生成苯硫酚(BT)。波长依赖性实验与暗场单粒子散射光谱相结合,揭示了NPoM的键合偶极等离子体模式的激发导致了最佳效率。在激发的等离子体衰变途径中,热载流子的产生诱导了MPBA的质子脱硼反应。排除了等离子体热反应的可能性,因为对基底进行外部加热并不会引发该反应。在环境、氩气和氧气条件下对反应产率的比较表明,热载流子直接转移到MPBA上,随后生成BT,但氧气的存在通过打开另一个热电子转移通道促进了反应。MPBA的质子脱硼反应是等离子体驱动化学反应目录中的一个重要补充,这不仅是因为该反应与有机化学和分析化学相关,还因为它加深了我们对等离子体纳米颗粒与分子界面处热载流子动力学的理解。