Hu Yong-Xu, Ying Yi-Lun, Gao Rui, Yu Ru-Jia, Long Yi-Tao
Key Laboratory for Advanced Materials & School of Chemistry and Molecular Engineering , East China University of Science and Technology , Shanghai 200237 , P. R. China.
Anal Chem. 2018 Nov 6;90(21):12352-12355. doi: 10.1021/acs.analchem.8b03923. Epub 2018 Oct 10.
The evolution of the nanobubble from gas molecules in liquid phase is of fundamental interest. However, the lack of sensitive tools hinders the study of growth dynamic of the bubble at nanoscale. Here, we employed a confined glass nanopore to real-time monitor the dynamics behavior of a single nanobubble generated by the reaction between NaBH and HO. By analyzing the characteristic ionic current signal, the formation time and growth time of a single nanobubble could be estimated as 200 and 21 ms, respectively. Further, the nanopore size has been altered to modulate the growth behavior of the nanobubble. The results demonstrate the capability of the nanopore for sensitively tracking the behavior of single nanobubbles in liquid phase, which provides a powerful method for further understanding nanobubble evolution.
液相中气体分子形成纳米气泡的过程具有重要的基础研究价值。然而,缺乏灵敏的工具阻碍了对纳米尺度下气泡生长动力学的研究。在此,我们利用一个受限的玻璃纳米孔实时监测由硼氢化钠(NaBH)与水(H₂O)反应产生的单个纳米气泡的动力学行为。通过分析特征离子电流信号,单个纳米气泡的形成时间和生长时间分别估计为200毫秒和21毫秒。此外,已改变纳米孔尺寸以调节纳米气泡的生长行为。结果证明了纳米孔能够灵敏地跟踪液相中单个纳米气泡的行为,这为进一步理解纳米气泡的演化提供了一种有力的方法。