April 2024

Journal

Amplifying Nanoparticle Reinforcement through Low Volume Topologically Controlled Chemical Coupling

By:
Kanbargi, Nihal S; Damron, Joshua T; Gao, Yawei ; Kearney, Logan T; Carrillo, Jan Michael Y; Keum, Jong K; Sumpter, Bobby G; Naskar, Amit K
Journal Name:
ACS Macro Letters
Page Number:
280-287
Volume:
13
Issue Number:
3
Publication Date:
April 5, 2024
View DOI Listing:
https://doi.org/10.1021/acsmacrolett.3c00739

Abstract

We present a streamlined method to covalently bond hydroxylated carbon nanotubes (CNOH) within a polyphenol matrix, all achieved through a direct, solvent-free process. Employing an extremely small concentration of CNOH (0.01% w/w) along with topologically contrasting linkers led to a maximum of 5-fold increase in modulus and a 25% enhancement in tensile strength compared to the unaltered matrix, an order of magnitude greater reinforcement (w/w) compared to state-of-the-art melt-processed nanocomposites. Through dynamic mechanical analysis, low field solid-state nuclear magnetic resonance spectroscopy, and molecular dynamics simulations, we uncovered the profound influence of linker’s conformational degrees of freedom on the segmental dynamics and therefore the material’s properties.