A tough and robust hydrogel constructed through carbon dots induced crystallization domains integrated orientation regulation
Abstract
Abstract Tough hydrogels show great potential applied in flexible electronics, sensors and soft robotics, but it remains challenging to combine high strength, toughness and stability. Here, we report the use of carbon dots (CDs) to induce the formation of crystalline domains, to give materials with favourable properties. The CDs act as nanoscale nucleation-sites within polyvinyl alcohol hydrogels, forming dense crystalline domains that serve as physical crosslinking sites. These domains enable a “pinning effect” that enhances energy dissipation and restricts crack propagation. The resulting hydrogels exhibit strong mechanical performance, including tensile strength up to 156 MPa and toughness of 225 MJ m -3 , while also maintaining good swelling resistance. This strategy is generalizable across different types of CDs and polymer systems. In addition, the hydrogels demonstrate stable conductivity under water, making them suitable for applications in underwater motion sensing and flexible supercapacitors. This work provides a scalable approach to engineer robust, multifunctional hydrogels.
Article Details
Authors (12)
Huanxin Huo
Jingjie Shen
Jianyong Wan
Haoran Shi
Institute of Intelligent Machines, Hefei Institutes of Physical Science
Hongxing Yang
Xin Duan
Yihong Gao
Yumeng Chen
State Key Laboratory of Rice Biology and Breeding, Zhejiang Key Laboratory of Biology and Ecological Regulation of Crop Pathogens and Insects, Institute of Insect Sciences, Zhejiang University
Feng Kuang
Hongshan Li
Long Yang
Guanben Du