Literature DB >> 32125146

Self-Derived Superhydrophobic and Multifunctional Polymer Sponge Composite with Excellent Joule Heating and Photothermal Performance for Strain/Pressure Sensors.

Ling Wang1, Dong Wang1, Zefeng Wu1, Junchen Luo1, Xuewu Huang1, Qiang Gao1, Xuejun Lai2, Long-Cheng Tang3, Huaiguo Xue1, Jiefeng Gao1,4.   

Abstract

Flexible strain or pressure sensors have potential applications in electronic skin, healthcare, etc. It remains a challenge to explore multifunctional strain or pressure sensors that possess excellent water repellent and heating performance and hence can be used in harsh environments such as high moisture and low-temperature conditions. Here, a self-derived superhydrophobic and multifunctional polymer composite foam is prepared by adsorption of the Ag precursor in tetrahydrofuran (THF) onto the rubber sponge followed by reduction of Ag+ to Ag nanoparticles (AgNPs). During the Ag+ reduction in hydrazine solution, the swollen rubber sponge by THF is partially precipitated based on the nonsolvent-induced phase separation (NIPS). The NIPS creates a porous structure on the sponge surface and thus a high surface roughness, contributing to the material superhydrophobicity. The precipitated polymer wrapping the AgNPs could enhance the interaction between the individual AgNPs. The obtained conductive sponge composite possesses excellent Joule heating and photothermal performance and can be used as both a strain and pressure sensor. The conductive sponge composite sensor possesses good reliability and durability and can be applied to real-time monitoring of human body movements.

Entities:  

Keywords:  Joule heating; photothermal; sponge; strain/pressure sensors; superhydrophobic

Year:  2020        PMID: 32125146     DOI: 10.1021/acsami.0c00150

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  3 in total

1.  Moisture-resistant MXene-sodium alginate sponges with sustained superhydrophobicity for monitoring human activities.

Authors:  Yangchengyi Liu; Zhong Sheng; Jielong Huang; Weiyi Liu; Hongyan Ding; Jinfeng Peng; Bowen Zhong; Yuhui Sun; Xiaoping Ouyang; Huanyu Cheng; Xiufeng Wang
Journal:  Chem Eng J       Date:  2022-01-06       Impact factor: 13.273

2.  Mechanically robust textile-based strain and pressure multimodal sensors using metal nanowire/polymer conducting fibers.

Authors:  Kyobin Keum; Sung Soo Cho; Jeong-Wan Jo; Sung Kyu Park; Yong-Hoon Kim
Journal:  iScience       Date:  2022-03-06

3.  Highly Stretchable and Sensitive Flexible Strain Sensor Based on Fe NWs/Graphene/PEDOT:PSS with a Porous Structure.

Authors:  Ping'an Yang; Sha Xiang; Rui Li; Haibo Ruan; Dachao Chen; Zhihao Zhou; Xin Huang; Zhongbang Liu
Journal:  Int J Mol Sci       Date:  2022-08-10       Impact factor: 6.208

  3 in total

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