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Fatigue Resistant Aerogel/Hydrogel Nanostructured Hybrid for Highly Sensitive and Ultrabroad Pressure Sensing.
Huang, Jiankun; Zeng, Jingbin; Zhang, Xue; Guo, Gengchen; Liu, Rui; Yan, Zifeng; Yin, Yadong.
Afiliación
  • Huang J; College of Science, State Key Laboratory of Heavy Oil Processing, China University of Petroleum (East), Qingdao, 266580, China.
  • Zeng J; College of Science, State Key Laboratory of Heavy Oil Processing, China University of Petroleum (East), Qingdao, 266580, China.
  • Zhang X; Department of Chemistry, University of California, Riverside, Riverside, CA, 92521, USA.
  • Guo G; College of Science, State Key Laboratory of Heavy Oil Processing, China University of Petroleum (East), Qingdao, 266580, China.
  • Liu R; College of Science, State Key Laboratory of Heavy Oil Processing, China University of Petroleum (East), Qingdao, 266580, China.
  • Yan Z; College of Science, State Key Laboratory of Heavy Oil Processing, China University of Petroleum (East), Qingdao, 266580, China.
  • Yin Y; State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China.
Small ; 18(1): e2104706, 2022 01.
Article en En | MEDLINE | ID: mdl-34873837
ABSTRACT
Achieving high sensitivity over a broad pressure range remains a great challenge in designing piezoresistive pressure sensors due to the irreconcilable requirements in structural deformability against extremely high pressures and piezoresistive sensitivity to very low pressures. This work proposes a hybrid aerogel/hydrogel sensor by integrating a nanotube structured polypyrrole aerogel with a polyacrylamide (PAAm) hydrogel. The aerogel is composed of durable twined polypyrrole nanotubes fabricated through a sacrificial templating approach. Its electromechanical performance can be regulated by controlling the thickness of the tube shell. A thicker shell enhances the charge mobility between tube walls and thus expedites current responses, making it highly sensitive in detecting low pressure. Moreover, a nucleotide-doped PAAm hydrogel with a reversible noncovalent interaction network is harnessed as the flexible substrate to assemble the aerogel/hydrogel hybrid sensor and overcome sensing saturation under extreme pressures. This highly stretchable and self-healable hybrid polymer sensor exhibits linear response with high sensitivity (Smin  > 1.1 kPa-1 ), ultrabroad sensing range (0.12-≈400 kPa), and stable sensing performance over 10 000 cycles at the pressure of 150 kPa, making it an ideal sensing device to monitor pressures from human physiological signals to significant stress exerted by vehicles.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Hidrogeles / Nanotubos de Carbono Tipo de estudio: Diagnostic_studies Límite: Humans Idioma: En Revista: Small Asunto de la revista: ENGENHARIA BIOMEDICA Año: 2022 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Hidrogeles / Nanotubos de Carbono Tipo de estudio: Diagnostic_studies Límite: Humans Idioma: En Revista: Small Asunto de la revista: ENGENHARIA BIOMEDICA Año: 2022 Tipo del documento: Article País de afiliación: China
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