Logo image
Roles of Textural and Surface Properties of Nanoparticles in Ultrasound-Responsive Systems
期刊文章   同儕審查

Roles of Textural and Surface Properties of Nanoparticles in Ultrasound-Responsive Systems

Qiaofeng Jin, Chih-Yu Lin, Yuan-Chih Chang, Chia-Min YangChih-Kuang Yeh
Langmuir, 卷.34(4), 頁碼.1256-1265
01/2018

摘要

Ultrasound-Responsive Systems;textural property;surface property Materials Science (all) Condensed Matter Physics Surfaces and Interfaces Spectroscopy Electrochemistry

Acoustic inertial cavitation (IC) is a crucial phenomenon for many ultrasound (US)-related applications. This study aimed to investigate the roles of textural and surface properties of NPs in IC generation by combining typical IC detection methods with various types of silica model NPs. Acoustic passive cavitation detection, optical high-speed photography, and US imaging have been used to quantify IC activities (referred to as the IC dose, ICD) and describe the physical characteristics of IC activities from NPs. The results showed that the ICDs from NPs were positively correlated to their surface hydrophobicity and that their external surface hydrophobicity plays a much more crucial role than do the textural properties. The high-speed photography revealed that the sizes of IC-generated bubbles from superhydrophobic NPs ranged from 20-40 μm at 4-6 MPa and collapsed in several microseconds. Bubble clouds monitored with US imaging showed that IC from NPs was consistent with the surface hydrophobicity. The simulation results based on the crevice model of cavitation nuclei correlated well with the experimental results. This study has demonstrated that the surface property, instead of the textural property, of NPs dominated the IC generation, and surface nanobubbles adsorbed on the NP surface have been proposed to be cavitation nuclei.

相關連結

指標

1 檢視次數

詳細資料

Logo image