Sharma Harsh, Trivedi Mohit, Nirmalkar Neelkanth
Department of Chemical Engineering, Indian Institute of Technology Ropar, Rupnagar 140001, India.
Langmuir. 2024 Jan 16;40(2):1534-1543. doi: 10.1021/acs.langmuir.3c03592. Epub 2024 Jan 4.
The existence of nanobubbles in pure water has been extensively debated in recent years, and it is speculated that nanobubbles may be ion-stabilized. However, nanobubbles in the alcohol-water mixture and pure alcohols are still controversial due to the lack of ions present in the alcohol system. This work tested the hypothesis that stable nanobubbles exist in pure alcohol. The ultrasound and oscillatory pressure fields are used to generate nanobubbles in pure alcohol. The size distribution, concentration, diameter, and scattering intensity of the nanobubbles were measured by nanoparticle tracking analysis. The light scattering method measures the zeta potential. The Mie scattering theory and electromagnetic wave simulation are utilized to estimate the refractive index (RI) of nanobubbles from the experimentally measured scattering light intensity. The average RI of the nanobubbles in pure alcohols produced by ultrasound and oscillating pressure fields was estimated to be 1.17 ± 0.03. Degassing the nanobubble sample reduces its concentration and increases its size. The average zeta potential of the nanobubbles in pure alcohol was measured to be -5 ± 0.9 mV. The mechanical stability model, which depends on force balance around a single nanobubble, also predicts the presence of nanobubbles in pure alcohol. The nanobubbles in higher-order alcohols were found to be marginally colloidally stable. In summary, both experimental and theoretical results suggest the existence of nanobubbles in pure alcohol.
近年来,纯水中纳米气泡的存在一直备受争议,据推测纳米气泡可能是离子稳定的。然而,由于醇体系中缺乏离子,醇 - 水混合物和纯醇中的纳米气泡仍然存在争议。这项工作验证了纯醇中存在稳定纳米气泡的假设。利用超声和振荡压力场在纯醇中产生纳米气泡。通过纳米颗粒跟踪分析测量纳米气泡的尺寸分布、浓度、直径和散射强度。采用光散射法测量zeta电位。利用米氏散射理论和电磁波模拟,根据实验测量的散射光强度估算纳米气泡的折射率(RI)。由超声和振荡压力场产生的纯醇中纳米气泡的平均RI估计为1.17±0.03。对纳米气泡样品进行脱气会降低其浓度并增大其尺寸。测得纯醇中纳米气泡的平均zeta电位为 -5±0.9 mV。依赖单个纳米气泡周围力平衡的机械稳定性模型也预测了纯醇中纳米气泡的存在。发现高阶醇中的纳米气泡在胶体上略微稳定。总之,实验和理论结果均表明纯醇中存在纳米气泡。