Investigation of the Rheological Properties of Zn-Ferrite/Perfluoropolyether Oil-Based Ferrofluids

The rheological properties of ferrofluids are related to various applications, such as sealing and loudspeakers, and have therefore attracted widespread attention. However, the rheological properties and their influence on the mechanisms of perfluoropolyether oil (PFPE oil)-based ferrofluids are com...

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Main Authors: Fang Chen, Xiaobing Liu, Zhenggui Li, Shengnan Yan, Hao Fu, Zhaoqiang Yan
Format: Article
Language:English
Published: MDPI AG 2021-10-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/11/10/2653
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author Fang Chen
Xiaobing Liu
Zhenggui Li
Shengnan Yan
Hao Fu
Zhaoqiang Yan
author_facet Fang Chen
Xiaobing Liu
Zhenggui Li
Shengnan Yan
Hao Fu
Zhaoqiang Yan
author_sort Fang Chen
collection DOAJ
description The rheological properties of ferrofluids are related to various applications, such as sealing and loudspeakers, and have therefore attracted widespread attention. However, the rheological properties and their influence on the mechanisms of perfluoropolyether oil (PFPE oil)-based ferrofluids are complicated and not clear. Here, a series of PFPE oil-based ferrofluids were synthesized via a chemical co-precipitation method, and their rheological properties were revealed, systematically. The results indicate that the prepared Zn-ferrite particles have an average size of 12.1 nm, within a range of 4–18 nm, and that the ferrofluids have excellent dispersion stability. The activity of the ferrofluids changes from Newtonian to non-Newtonian, then to solid-like with increasing <i>w</i> from 10 wt% to 45.5 wt%, owing to their variation in microstructures. The viscosity of the ferrofluids increases with increasing <i>M</i><sub>w</sub> (the molecular weight of base liquid PFPE oil polymer), attributed to the increase in entanglements between PFPE oil molecules. The magnetization temperature variation of Zn-ferrite nanoparticles and viscosity temperature variation of PFPE oil together contribute to the viscosity temperature change in ferrofluids. The viscosity of the ferrofluids basically remains unchanged when shear rate is above 50 s<sup>−1</sup>, with increasing magnetic field strength; however, it first increases and then levels off when the rate is under 10 s<sup>−1</sup>, revealing that the shear rate and magnetic field strength together affect viscosity. The viscosity and its alteration in Zn-ferrite/PFPE oil-based ferrofluids could be deduced through our work, which will be greatly significant in basic theoretical research and in various applications.
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spelling doaj.art-3787d7952e8947a78763e5756ae8577d2023-11-22T19:24:38ZengMDPI AGNanomaterials2079-49912021-10-011110265310.3390/nano11102653Investigation of the Rheological Properties of Zn-Ferrite/Perfluoropolyether Oil-Based FerrofluidsFang Chen0Xiaobing Liu1Zhenggui Li2Shengnan Yan3Hao Fu4Zhaoqiang Yan5Key Laboratory of Fluid and Power Machinery, Ministry of Education, Xihua University, Chengdu 610039, ChinaKey Laboratory of Fluid and Power Machinery, Ministry of Education, Xihua University, Chengdu 610039, ChinaKey Laboratory of Fluid and Power Machinery, Ministry of Education, Xihua University, Chengdu 610039, ChinaKey Laboratory of Fluid and Power Machinery, Ministry of Education, Xihua University, Chengdu 610039, ChinaSchool of Physics, University of Electronic Science and Technology of China, Chengdu 611731, ChinaZigong Zhaoqiang Sealing Products Industrial Co., Ltd., Zigong 643000, ChinaThe rheological properties of ferrofluids are related to various applications, such as sealing and loudspeakers, and have therefore attracted widespread attention. However, the rheological properties and their influence on the mechanisms of perfluoropolyether oil (PFPE oil)-based ferrofluids are complicated and not clear. Here, a series of PFPE oil-based ferrofluids were synthesized via a chemical co-precipitation method, and their rheological properties were revealed, systematically. The results indicate that the prepared Zn-ferrite particles have an average size of 12.1 nm, within a range of 4–18 nm, and that the ferrofluids have excellent dispersion stability. The activity of the ferrofluids changes from Newtonian to non-Newtonian, then to solid-like with increasing <i>w</i> from 10 wt% to 45.5 wt%, owing to their variation in microstructures. The viscosity of the ferrofluids increases with increasing <i>M</i><sub>w</sub> (the molecular weight of base liquid PFPE oil polymer), attributed to the increase in entanglements between PFPE oil molecules. The magnetization temperature variation of Zn-ferrite nanoparticles and viscosity temperature variation of PFPE oil together contribute to the viscosity temperature change in ferrofluids. The viscosity of the ferrofluids basically remains unchanged when shear rate is above 50 s<sup>−1</sup>, with increasing magnetic field strength; however, it first increases and then levels off when the rate is under 10 s<sup>−1</sup>, revealing that the shear rate and magnetic field strength together affect viscosity. The viscosity and its alteration in Zn-ferrite/PFPE oil-based ferrofluids could be deduced through our work, which will be greatly significant in basic theoretical research and in various applications.https://www.mdpi.com/2079-4991/11/10/2653ferrofluidrheological propertyviscositymagnetic field
spellingShingle Fang Chen
Xiaobing Liu
Zhenggui Li
Shengnan Yan
Hao Fu
Zhaoqiang Yan
Investigation of the Rheological Properties of Zn-Ferrite/Perfluoropolyether Oil-Based Ferrofluids
Nanomaterials
ferrofluid
rheological property
viscosity
magnetic field
title Investigation of the Rheological Properties of Zn-Ferrite/Perfluoropolyether Oil-Based Ferrofluids
title_full Investigation of the Rheological Properties of Zn-Ferrite/Perfluoropolyether Oil-Based Ferrofluids
title_fullStr Investigation of the Rheological Properties of Zn-Ferrite/Perfluoropolyether Oil-Based Ferrofluids
title_full_unstemmed Investigation of the Rheological Properties of Zn-Ferrite/Perfluoropolyether Oil-Based Ferrofluids
title_short Investigation of the Rheological Properties of Zn-Ferrite/Perfluoropolyether Oil-Based Ferrofluids
title_sort investigation of the rheological properties of zn ferrite perfluoropolyether oil based ferrofluids
topic ferrofluid
rheological property
viscosity
magnetic field
url https://www.mdpi.com/2079-4991/11/10/2653
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AT zhengguili investigationoftherheologicalpropertiesofznferriteperfluoropolyetheroilbasedferrofluids
AT shengnanyan investigationoftherheologicalpropertiesofznferriteperfluoropolyetheroilbasedferrofluids
AT haofu investigationoftherheologicalpropertiesofznferriteperfluoropolyetheroilbasedferrofluids
AT zhaoqiangyan investigationoftherheologicalpropertiesofznferriteperfluoropolyetheroilbasedferrofluids