Sustainable 3D printing by reversible salting-out effects with aqueous salt solutions

  • Ji, Donghwan; 
  • Liu, Joseph; 
  • Zhao, Jiayu; 
  • Li, Minghao; 
  • Rho, Yumi; 
  • ... Bae, Jinhye; 
  • 외 2명
Citations

WEB OF SCIENCE

41
Citations

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44

초록

Achieving a simple yet sustainable printing technique with minimal instruments and energy remains challenging. Here, a facile and sustainable 3D printing technique is developed by utilizing a reversible salting-out effect. The salting-out effect induced by aqueous salt solutions lowers the phase transition temperature of poly(N-isopropylacrylamide) (PNIPAM) solutions to below 10 °C. It enables the spontaneous and instant formation of physical crosslinks within PNIPAM chains at room temperature, thus allowing the PNIPAM solution to solidify upon contact with a salt solution. The PNIPAM solutions are extrudable through needles and can immediately solidify by salt ions, preserving printed structures, without rheological modifiers, chemical crosslinkers, and additional post-processing steps/equipment. The reversible physical crosslinking and de-crosslinking of the polymer through the salting-out effect demonstrate the recyclability of the polymeric ink. This printing approach extends to various PNIPAM-based composite solutions incorporating functional materials or other polymers, which offers great potential for developing water-soluble disposable electronic circuits, carriers for delivering small materials, and smart actuators.

키워드

GLOBULE TRANSITION; HYDROGELS; SOFT; POLY(N-ISOPROPYLACRYLAMIDE); SPECTROSCOPY; DYNAMICS; IONS
제목
Sustainable 3D printing by reversible salting-out effects with aqueous salt solutions
저자
Ji, Donghwan; Liu, Joseph; Zhao, Jiayu; Li, Minghao; Rho, Yumi; Shin, Hwansoo; Han, Tae Hee; Bae, Jinhye
DOI
10.1038/s41467-024-48121-7
발행일
2024-05
유형
Article
저널명
Nature Communications
권
15
호
1

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