Constructal Theory Modeling of Colloidal Particle Assembly

Author(s):  
Scott C. Bukosky ◽  
Sukrith Dev ◽  
Monica S. Allen ◽  
Jeffery W. Allen
2014 ◽  
Vol 4 (2) ◽  
pp. 195-201 ◽  
Author(s):  
Min Kyung Lee ◽  
Max H. Rich ◽  
Artem Shkumatov ◽  
Jae Hyun Jeong ◽  
Marni D. Boppart ◽  
...  

iScience ◽  
2021 ◽  
Vol 24 (2) ◽  
pp. 102121
Author(s):  
Kaixuan Li ◽  
Chang Li ◽  
Huizeng Li ◽  
Mingzhu Li ◽  
Yanlin Song

Author(s):  
Rafael San Martin Moreira ◽  
Liércio Isoldi ◽  
jeferson Avila Souza ◽  
Elizaldo dos Santos

2020 ◽  
Vol 0 (0) ◽  
Author(s):  
Andreas M. Menzel ◽  
Hartmut Löwen

Abstract Magnetic gels and elastomers consist of magnetic or magnetizable colloidal particles embedded in an elastic polymeric matrix. Outstanding properties of these materials comprise reversible changes in their mechanical stiffness or magnetostrictive distortions under the influence of external magnetic fields. To understand such types of overall material behavior from a theoretical point of view, it is essential to characterize the substances starting from the discrete colloidal particle level. It turns out that the macroscopic material response depends sensitively on the mesoscopic particle arrangement. We have utilized and developed several theoretical approaches to this end, allowing us both to reproduce experimental observations and to make theoretical predictions. Our hope is that both these paths help to further stimulate the interest in these fascinating materials.


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