Magnetic microwire probes for the magnetic rod interfacial stress rheometer

Tajuelo, J; Pastor, JM; Martínez-Pedrero, F; Vázquez, M; Ortega, F; Rubio, RG; Rubio, MA

HERO ID

4929279

Reference Type

Journal Article

Year

2015

Language

English

PMID

25495270

HERO ID 4929279
In Press No
Year 2015
Title Magnetic microwire probes for the magnetic rod interfacial stress rheometer
Authors Tajuelo, J; Pastor, JM; Martínez-Pedrero, F; Vázquez, M; Ortega, F; Rubio, RG; Rubio, MA
Journal Langmuir
Volume 31
Issue 4
Page Numbers 1410-1420
Abstract The magnetic needle interfacial shear rheometer is a valuable tool for the study of the mechanical properties of thin fluid films or monolayers. However, it is difficult to differentiate the interfacial and subphase contributions to the drag on the needle. In principle, the problem can be addressed by decreasing the needle diameter, which decreases the bulk contribution while the interfacial contribution remains essentially the same. Here we show the results obtained when using a new type of needle, that of magnetic microwires with diameter approximately 10 times thinner than for commercial needles. We show that the lower inertia of the microwires calls for a new calibration procedure. We propose such a new calibration procedure based on the flow field solution around the needle introduced in refs 1 and 2. By measuring thin silicone oil films with well-controlled interfacial viscosities as well as eicosanol (C20) and pentadecanoic acid (PDA, C15) Langmuir monolayers, we show that the new calibration method works well for standard needles as well as for the microwire probes. Moreover, we show that the analysis of the force terms contributing to the force on the needle helps to ascertain whether the measurements obtained are reliable for given surface shear viscosity values. We also show that the microwire probes have at least a 10-fold-lower resolution limit, allowing one to measure interfacial viscosities as low as 10(-7) N·m/s.
Doi 10.1021/la5038316
Pmid 25495270
Wosid WOS:000349059200022
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English