arrow
Return

Thermoforming nanoparticle aggregates via interfacial ionic self-diffusion

delete2026-05-15
delete0
delete
OA
AI
S
Shun Ishioka *
Y
Yuki Hiromatsu
J
Jiaxin Peng
T
Taizo Kabe
T
Takaaki Kasuga
K
Kazuho Daicho
Y
Yohsuke Goi
N
Noriyuki Isobe
T
Tetsuo Yamaguchi
S
Shuji Fujisawa
H
Hirotaka Koga
T
Tadahisa Iwata
J
Junichiro Shiomi
M
Masaya Nogi
T
Tsuguyuki Saito *
DOI:10.1126/sciadv.aeb3281delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Dense aggregates of nanoparticles often exhibit excellent physical properties but have no thermoplasticity. Their formation processes are thus limited to drying of dilute nanoparticle dispersions, resulting in thin flat sheets or slender filaments. This limitation hinders the application of nanoparticle aggregates. In this study, we developed a thermoforming strategy for nanoparticle aggregates using wood-derived cellulose nanofibers (CNFs). CNF aggregates with thermoplasticity were formed by introducing anionic functional groups onto the CNF surfaces, followed by pairing the anions with highly dissociable ionic liquid (IL) counterions. Heat-induced self-diffusion of the IL counterions at the interfaces between CNFs within an aggregate allowed thermoforming of CNF aggregates, such as three-dimensional molding, position-selective sealing, and multilayer lamination of sheets. This thermoforming strategy was also applicable to two-dimensional carbon nanoparticle (graphene oxide) systems.
Keywords:
nanoparticle aggregates
thermoforming
cellulose nanofibers
ionic liquid
self-diffusion

Journal

Science Advances cover
Science Advances
IF:
12.5
Papers:
2.0W
Citations:
18.1W

Organization

U
University of Osaka
Scholars:
4.8K
Papers: 1.5K
Citations: 1
T
The University of Tokyo
Scholars:
2.1K
Papers: 769
Citations: 8.1W