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High strength sustainable nanocomposites with multicomponent synergistic reinforcement

delete2026-05-01
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PRE
AI
G
Guojun Che
S
Shuxing Yin
C
Cheng Qian
C
Can Zhou
Y
Yi Ding
Y
Ying Zhang
C
Chuangqi Zhao *
L
Lei Jiang
DOI:10.26599/NR.2026.94908491delete
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Abstract

Abstract

En 中文
Plastics play an indispensable role in daily life, but their adverse impacts on nature and human health are becoming increasingly severe due to their non-degradability and the persistent accumulation of plastic waste. It is essential to develop biodegradable and sustainable alternatives with favorable mechanical properties. Here, we developed a dilute-solution-based strategy that enables the facile and scalable production of high strength sustainable nanocomposites with multicomponent synergistic reinforcement. Owing to the shear-flow-induced nanosheets alignment and strong interfacial interactions, the nanocomposites achieve outstanding mechanical properties, with a high tensile strength of 566.9 +/- 13.5 MPa. Moreover, these nanocomposites possess electromechanical stability and thermal stability, and can fully biodegrade within 30 days in natural soil. This strategy provides an effective pathway for the design of high-performance sustainable nanocomposites.
Keywords:
high strength
nanocomposite
superspreading
mechanical properties
sustainable

Journal

Nano Research cover
Nano Research
IF:
9
Papers:
7.4K
Citations:
4.9W

Organization

C
chinese academy of sciences
Scholars:
54.9W
Papers: 44.5W
Citations: 703
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