arrow
Return

Programmable Processing toward Stiff Composite Hydrogels

delete2022-08-03
delete3
PRE
AI
Y
Yexiao Duan
Y
Yanran Zhao
S
Shili Ai
D
Dong Qiu
王晓燕 cover
王晓燕 (Xiaoyan Wang) *
X
Xiaozhong Qu *
杨振忠 cover
杨振忠 (Zhenzhong Yang) *
DOI:10.1021/acs.macromol.2c00852delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
To overcome the issue of the compromise between processability and mechanical property of hydrogels, a percolation-driven programmable processing method is proposed toward the preparation of plastic composite hydrogels with a high compressive modulus in a megapascal scale. The hydrogel was constructed by the incorporation of a thixotropic fluid, for example, a silica microsphere (SiMP)/sodium alginate composite, into an elastic polymer network, such as dynamically cross-linked poly(vinyl alcohol)/4-carboxyphenyl boronic acid, followed by the adjustment of interpolymer interactions. Above a threshold of SiMP content, the isolated particle lattice in the gel was interconnected by the highly entangled alginate as well as PVA chains to form a percolation double network (p-DN), leading to enhanced thixotropy to allow the processing of the hydrogel into desired shapes. Subsequently, the plasticity of the p-DN hydrogel was converted to stiffness by confining the movement of polymer chains through additional cross-linking using multivalent cationic ions. The rigidity of calcium alginate resists the dislocation of the particles in the percolation network while the elasticity of PVA holds the integrity of the hydrogel to obtain the high compressive modulus against force loading. This strategy is general to achieve processable high-performance p-DN hydrogels with varied compositions.
Keywords:
TOUGH HYDROGELS
CALCIUM-CARBONATE
LIGHT-SCATTERING
INSPIRED POLYMER
MOLECULAR-WEIGHT
NANOPARTICLES
VISCOSITY

Journal

Macromolecules cover
Macromolecules
IF:
5.2
Papers:
3.7W
Citations:
9.4W

Organization

U
university of chinese academy of sciences, cas
Scholars:
4.1W
Papers: 3.8W
Citations: 75
T
tsinghua university
Scholars:
11.8W
Papers: 10.0W
Citations: 137
P
peking university
Scholars:
11.8W
Papers: 8.7W
Citations: 146
C
chinese academy of sciences
Scholars:
56.5W
Papers: 44.9W
Citations: 704
researcher View more organizations