4.7 Review

Challenges in Multiscale Modeling of Polymer Dynamics

期刊

POLYMERS
卷 5, 期 2, 页码 751-832

出版社

MDPI
DOI: 10.3390/polym5020751

关键词

multiscale modeling; polymer; viscoelasticity; rheology; coarse-grained molecular dynamics; entanglement; primitive path; tube model

资金

  1. NSF CMMI [0823327, 0928320]
  2. NSF IDR [1130948]
  3. Ryan Fellowship at Northwestern University
  4. World Class University Program through the National Research Foundation of Korea (NRF)
  5. Ministry of Education, Science and Technology [R33-10079]
  6. Office of Science of the U.S. Department of Energy [DE-AC02-06CH11357]
  7. Directorate For Engineering
  8. Div Of Civil, Mechanical, & Manufact Inn [0823327] Funding Source: National Science Foundation
  9. Div Of Civil, Mechanical, & Manufact Inn
  10. Directorate For Engineering [0928320, 1130948] Funding Source: National Science Foundation

向作者/读者索取更多资源

The mechanical and physical properties of polymeric materials originate from the interplay of phenomena at different spatial and temporal scales. As such, it is necessary to adopt multiscale techniques when modeling polymeric materials in order to account for all important mechanisms. Over the past two decades, a number of different multiscale computational techniques have been developed that can be divided into three categories: (i) coarse-graining methods for generic polymers; (ii) systematic coarse-graining methods and (iii) multiple-scale-bridging methods. In this work, we discuss and compare eleven different multiscale computational techniques falling under these categories and assess them critically according to their ability to provide a rigorous link between polymer chemistry and rheological material properties. For each technique, the fundamental ideas and equations are introduced, and the most important results or predictions are shown and discussed. On the one hand, this review provides a comprehensive tutorial on multiscale computational techniques, which will be of interest to readers newly entering this field; on the other, it presents a critical discussion of the future opportunities and key challenges in the multiscale `modeling of polymeric materials and how these methods can help us to optimize and design new polymeric materials.`

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