Copper has been electrodeposited in the presence of an acoustically excited gas bubble (Ar bubbles with radii 1.5 mm held below a copper plate). Under the conditions employed, an acoustic pressure amplitude of 69.5 Pa is sufficient to excite multiple surface wave modes on the bubble wall. This is observed using high-speed imaging. This oscillation generates significant micromixing, which brings fresh electrolyte to the electrode surface leading to an enhanced deposition current. Scanning electron microscopy reveals radial streaming patterns in the resulting copper deposit. Experiments carried out using a lower acoustic pressure amplitude of 50.5 Pa (such that only the Faraday wave is excited) exhibit a lesser degree of streaming and mass tr...
The effect of ultrasonic agitation on the grain size, porosity, hardness, brightness and internal st...
The interaction of a tethered bubble with sound is demonstrated using novel electrochemical characte...
In this paper we propose an agitation method based on megasonic acoustic streaming to overcome the l...
A bubble driven to oscillate by a sound field can be detected electrochemically via mass transfer en...
The oscillation of a gas bubble driven by an acoustic field has been investigated using an electroch...
This article discusses the work on how power ultrasound can enhance agitation greatly, especially in...
Purpose – This study aims to understand the influence of megasonic (MS)-assisted agitation on printe...
This thesis details an investigation of bubble dynamics using a set of novel electrochemical impedan...
We report on the use of a high aspect ratio microchannel (Hele-Shaw’s cell) in which ramified iron d...
Acoustic cavitation considerably enhances the mass transport toward a surface. When suitably fast el...
PurposeThis study aims to understand the influence of megasonic (MS)-assisted agitation on printed c...
The investigation of bubble events generated and driven in an acoustic environment is reported. An e...
PurposeThis study aims to understand the influence of megasonic (MS)-assisted agitation on printed c...
The effect of the ultrasound on electrochemical processes has been investigated employing a microele...
PurposeThis study aims to understand the influence of megasonic (MS)-assisted agitation on printed c...
The effect of ultrasonic agitation on the grain size, porosity, hardness, brightness and internal st...
The interaction of a tethered bubble with sound is demonstrated using novel electrochemical characte...
In this paper we propose an agitation method based on megasonic acoustic streaming to overcome the l...
A bubble driven to oscillate by a sound field can be detected electrochemically via mass transfer en...
The oscillation of a gas bubble driven by an acoustic field has been investigated using an electroch...
This article discusses the work on how power ultrasound can enhance agitation greatly, especially in...
Purpose – This study aims to understand the influence of megasonic (MS)-assisted agitation on printe...
This thesis details an investigation of bubble dynamics using a set of novel electrochemical impedan...
We report on the use of a high aspect ratio microchannel (Hele-Shaw’s cell) in which ramified iron d...
Acoustic cavitation considerably enhances the mass transport toward a surface. When suitably fast el...
PurposeThis study aims to understand the influence of megasonic (MS)-assisted agitation on printed c...
The investigation of bubble events generated and driven in an acoustic environment is reported. An e...
PurposeThis study aims to understand the influence of megasonic (MS)-assisted agitation on printed c...
The effect of the ultrasound on electrochemical processes has been investigated employing a microele...
PurposeThis study aims to understand the influence of megasonic (MS)-assisted agitation on printed c...
The effect of ultrasonic agitation on the grain size, porosity, hardness, brightness and internal st...
The interaction of a tethered bubble with sound is demonstrated using novel electrochemical characte...
In this paper we propose an agitation method based on megasonic acoustic streaming to overcome the l...