We describe an improved method for determining the electroosmotic mobility and zeta potential of surfaces based on a current-monitoring method. This technique eliminates the requirement for measurements of channel dimensions and sample conductivities, leading to a simple high precision measurement. The zeta potential of PDMS is measured for native surfaces and surfaces treated with a nonionic surfactant in low-conductivity electrolytes
A time-resolved microPIV method is presented to measure in an EOF the particles zeta potential in si...
Fluorescent dyes are widely used in the area of microfluidic studies. However, few studies have been...
The method is based on measurement of the electroosmosis of the system formed by a rod placed in a c...
We describe an improved method for determining the electroosmotic mobility and zeta potential of sur...
A new method is proposed to measure the zeta potential of microfabricated channel surfaces. It is ba...
Zeta potential is a property of material surface charge when it is surrounded by fluid. The study of...
The zeta potentials of channel surfaces and tracer particles are of importance to the design of elec...
The zeta potentials of channel surfaces and tracer particles are of importance to the design of elec...
Measurement techniques for detecting surface charge have gained attention in the last few decades du...
Measurement techniques for detecting surface charge have gained attention in the last few decades du...
Electroosmosis flow refers to motion of liquids induced by an applied voltage across microchannels.1...
Successful characterization of membranes is of paramount importance for the development and improvem...
A time-resolved microPIV method is presented to measure in an EOF the particles zeta potential in si...
A time-resolved microPIV method is presented to measure in an EOF the particles zeta potential in si...
The so-called zeta potential can be determined through electrokinetic measurements and indicates the...
A time-resolved microPIV method is presented to measure in an EOF the particles zeta potential in si...
Fluorescent dyes are widely used in the area of microfluidic studies. However, few studies have been...
The method is based on measurement of the electroosmosis of the system formed by a rod placed in a c...
We describe an improved method for determining the electroosmotic mobility and zeta potential of sur...
A new method is proposed to measure the zeta potential of microfabricated channel surfaces. It is ba...
Zeta potential is a property of material surface charge when it is surrounded by fluid. The study of...
The zeta potentials of channel surfaces and tracer particles are of importance to the design of elec...
The zeta potentials of channel surfaces and tracer particles are of importance to the design of elec...
Measurement techniques for detecting surface charge have gained attention in the last few decades du...
Measurement techniques for detecting surface charge have gained attention in the last few decades du...
Electroosmosis flow refers to motion of liquids induced by an applied voltage across microchannels.1...
Successful characterization of membranes is of paramount importance for the development and improvem...
A time-resolved microPIV method is presented to measure in an EOF the particles zeta potential in si...
A time-resolved microPIV method is presented to measure in an EOF the particles zeta potential in si...
The so-called zeta potential can be determined through electrokinetic measurements and indicates the...
A time-resolved microPIV method is presented to measure in an EOF the particles zeta potential in si...
Fluorescent dyes are widely used in the area of microfluidic studies. However, few studies have been...
The method is based on measurement of the electroosmosis of the system formed by a rod placed in a c...