Electrorheological Fluids with Polymers/Polymeric Nanocomposites-Retrospective and Prospective

被引:0
作者
Kausar, Ayesha [1 ]
机构
[1] Quaid I Azam Univ Campus, Natl Ctr Phys, Islamabad, Pakistan
来源
POLYMER-PLASTICS TECHNOLOGY AND MATERIALS | 2025年 / 64卷 / 10期
关键词
Automotive; electrorheological fluid; flexible electronics; graphene; metal nanoparticles; polymeric nanocomposite; shear properties; COMPOSITE-PARTICLES; FACILE FABRICATION; PERFORMANCE; CONDUCTIVITY; MICROSPHERES; POLYANILINE; PANI;
D O I
10.1080/25740881.2025.2470853
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Electrorheological fluids indisputably constitute an inimitable category of stimuli-responsive materials having capability of changing their rheological characteristics under applied electric field effects. An electrorheological fluid generally consists of dispersed phase (particles/nanoparticles) suspended in carrier phase (oil). Looking at the hitherto technical worth of nanomaterials derived electrorheological fluids, this review article is planned to highlight state of the art, key characteristics, overall efficiency requirements, structure-property-performance advantages, and downsides of these smart fluids. As per research advances to date, wide ranging nanocarbons (graphene, carbon nanotube), inorganic (metal/metal oxide, MOF, nanoclay), polymers (conducting, thermoplastics), and polymeric hybrids have been investigated as dispersed phases of electrorheological fluids. Among polymeric nanocomposites for electrorheological fluid designs, conductive/nonconducting matrices (polyaniline, polypyrrole, polystyrene, polyethylene, poly(methyl methacrylate), cellulose/chitosan, etc.) have been reinforced with nanocarbon/inorganic nanoparticles. Consequently, this article debates significant electrorheological characteristics, including dispersed phase particle size, microstructure, electrical/dielectric, shear stress/rate, heat/mechanical stability, and overall electrorheological efficiency. Incidentally, crucial application of polymer/nanocomposite-based electrorheological fluids for automotive/aerospace (engine performance, lubricants), flexible electronics (actuators, devices), and biomedical (endoscopy devices) was documented. Owing to literature coverage and systematic elaborations, this manuscript will offer a comprehensive resource for scientific community seeking future progresses on high-tech industrial-level smart fluids.
引用
收藏
页码:1475 / 1505
页数:31
相关论文
共 139 条
[71]   Electrorheological response of polyaniline and its hybrids [J].
Liu, Ying Dan ;
Choi, Hyoung Jin .
CHEMICAL PAPERS, 2013, 67 (08) :849-859
[72]   Novel electrorheological properties of a metal-organic framework Cu3(BTC)2 [J].
Liu, Ying Dan ;
Kim, Jun ;
Ahn, Wha-Seung ;
Choi, Hyoung Jin .
CHEMICAL COMMUNICATIONS, 2012, 48 (45) :5635-5637
[73]   Pickering emulsion polymerized Fe3O4@graphene oxide-polystyrene composite particles and their electro/magnetorheological responses [J].
Lu, Qi ;
Jin, Hyoung-Joon ;
Choi, Hyoung Jin .
JOURNAL OF MOLECULAR LIQUIDS, 2022, 365
[74]   Magnetite-embedded poly (2-methylaniline) hybrid particles and their smart responses under magnetic and electric fields [J].
Lu, Qi ;
Esmaeilnezhad, Ehsan ;
Choi, Hyoung Jin .
JOURNAL OF MOLECULAR LIQUIDS, 2021, 340
[75]   Functional nanoporous graphene superlattice [J].
Lv, Hualiang ;
Yao, Yuxing ;
Yuan, Mingyue ;
Chen, Guanyu ;
Wang, Yuchao ;
Rao, Longjun ;
Li, Shucong ;
Kara, Ufuoma I. ;
Dupont, Robert L. ;
Zhang, Cheng ;
Chen, Boyuan ;
Liu, Bo ;
Zhou, Xiaodi ;
Wu, Renbing ;
Adera, Solomon ;
Che, Renchao ;
Zhang, Xingcai ;
Wang, Xiaoguang .
NATURE COMMUNICATIONS, 2024, 15 (01)
[76]   AC Impedance Analysis of Electrorheological Fluids - Activated Biomedical Devices [J].
Lvovich, Vadim F. ;
Samorezov, Sergey S. .
IMPEDANCE TECHNIQUES: DIAGNOSTICS AND SENSING APPLICATIONS, 2012, 41 (28) :37-55
[77]  
Maharjan S., 2022, APPL NANOCOMPOSITES, P34
[78]   Polyaniline assembly ultra-thin graphene hybrid nanocomposites synthesis for current research trends of promising applications in emerging fields [J].
Meher, Ankita ;
Tandi, Ashish ;
Jena, Harendra K. ;
Rout, Lipeeka ;
Moharana, Srikanta ;
Sagadevan, Suresh .
MATERIALS SCIENCE AND ENGINEERING B-ADVANCED FUNCTIONAL SOLID-STATE MATERIALS, 2024, 308
[79]   Pickering emulsion polymerized core-shell structured poly(methyl methacrylate)/graphene oxide particles and their electrorheological characteristics [J].
Min, Tae Hong ;
Lee, Chul Joo ;
Choi, Hyoung Jin .
POLYMER TESTING, 2018, 66 :195-202
[80]   A Review Damping in Compliant Actuation [J].
Monteleone, Simone ;
Negrello, Francesca ;
Catalano, Manuel G. ;
Garabini, Manolo ;
Grioli, Giorgio .
IEEE ROBOTICS & AUTOMATION MAGAZINE, 2022, 29 (03) :47-66