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Development of polyvinyl alcohol/carrageenan hydrogels and fibers via KOH treatment for Morse code information transmission.
Feng, Shi; Guo, Jing; Yang, Qiang; Guan, Fucheng; Yao, Qiang; Wang, Yonghe; Quan, Fengyu; Zeng, Shijun.
Afiliação
  • Feng S; School of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, China.
  • Guo J; School of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, China. Electronic address: guojing8161@163.com.
  • Yang Q; School of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, China.
  • Guan F; School of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, China. Electronic address: gfc6322577@163.com.
  • Yao Q; School of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, China.
  • Wang Y; School of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, China.
  • Quan F; State Key Laboratory of Bio-Fibers and Eco-Textiles, Qingdao University, Qingdao 266071, China.
  • Zeng S; Dalian Huayang New Material Technology Co., Ltd., Dalian 116047, China.
Int J Biol Macromol ; 265(Pt 1): 130803, 2024 Apr.
Article em En | MEDLINE | ID: mdl-38484811
ABSTRACT
To solve the inherent problems of conductive hydrogels, such as relatively low mechanical properties and fatigue resistance, inability to work after water loss, and difficulty weaving. In this study, the borax-crosslinked polyvinyl alcohol/k-carrageenan (kC) conducting hydrogels (BPKKOH) were prepared by a simple one-pot method, and KOH treatment was used instead of the cumbersome and time-consuming freeze-thaw cycle to improve the comprehensive properties. The KOH treatment increased the hydrogel hydrogen bonding content by 7.72 % and synergized with the induction of kC by K+ to enhance the tensile and compressive strengths by 8.12 and 34.6 times, respectively. Meanwhile, the BPKKOH hydrogel's fatigue resistance and shape recovery after water loss were improved. Additionally, the BPKKOH hydrogels can be monitored for finger bending, showing clear and stable differences in electrical signals. BPKKOH hydrogels combined with Morse code realize applications in information transmission and encryption/decryption. Notably, introducing KOH ensures the molding and preparation of BPKKOH hydrogel fibers while having good signal responsiveness and monitoring ability. More importantly, it can be woven into fabrics that can be loaded with heavy weights, which has the potential to be directly applied in smart wearables. This work provides new ideas for applying flexible sensors and wearable smart textiles.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Álcool de Polivinil / Hidrogéis Idioma: En Revista: Int J Biol Macromol Ano de publicação: 2024 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Álcool de Polivinil / Hidrogéis Idioma: En Revista: Int J Biol Macromol Ano de publicação: 2024 Tipo de documento: Article País de afiliação: China