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  5. Engineer Reversible Nanocomposite by Programming Amorphous Polymer Conformation Under Nanoconfinement

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Preprint
English
2024

Engineer Reversible Nanocomposite by Programming Amorphous Polymer Conformation Under Nanoconfinement

0 Datasets

0 Files

English
2024
DOI: 10.26434/chemrxiv-2024-cpjgk

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Robert O. Ritchie
Robert O. Ritchie

University of California, Berkeley

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Tiffany Chen
Yiwen Qian
Antoine Lainé
+11 more

Abstract

We utilize nanoconfinements to program how polymers entangle and disentangle as chain clusters to engineer pseudo bonds with tunable strength, multivalency, and directionality. When amorphous polymers are grafted to nanoparticles that are one magnitude larger in size than individual polymer, programming grafted chain conformations can “synthesize” high performance nanocomposites with moduli of ~25GPa and a circular lifecycle without forming and/or breaking chemical bonds. These nanocomposites dissipate external stresses by disentangling and stretching grafted polymers up to ~98% of their contour length, analogous to that of folded proteins; use both polymers and nanoparticles for load bearing; and exhibit a non-linear dependence on composition throughout the microscopic, nanoscopic and single particle levels.

How to cite this publication

Tiffany Chen, Yiwen Qian, Antoine Lainé, Junpyo Kwon, Luofu Liu, Subhadeep Pal, Supriya Gupta, Emma Vargo, Gregory M. Su, Robert O. Ritchie, Sinan Keten, Rui Wang, Miquel Salmerón, Ting Xu (2024). Engineer Reversible Nanocomposite by Programming Amorphous Polymer Conformation Under Nanoconfinement. , DOI: 10.26434/chemrxiv-2024-cpjgk.

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Publication Details

Type

Preprint

Year

2024

Authors

14

Datasets

0

Total Files

0

Language

English

DOI

10.26434/chemrxiv-2024-cpjgk

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