4.8 Article

Novel coaxial fiber-shaped sensing system integrated with an asymmetric supercapacitor and a humidity sensor

Journal

ENERGY STORAGE MATERIALS
Volume 15, Issue -, Pages 315-323

Publisher

ELSEVIER
DOI: 10.1016/j.ensm.2018.06.007

Keywords

Carbon nanotube fiber; Three-dimensional hierarchical nanostructure; Coaxial asymmetric supercapacitor; Wearable humidity sensor; Integrated configuration

Funding

  1. National Natural Science Foundation of China [51522211, 51602339, 51703241]
  2. Key Research Program of Frontier Science of Chinese Academy of Sciences [QYZDB-SSW-SLH031]
  3. Thousand Youth Talents Plan
  4. Postdoctoral Foundation of China [2016M601905, 2017M621855]
  5. Natural Science Foundation of Jiangsu Province, China [BK20160399]
  6. Postdoctoral Foundation of Jiangsu Province [1601065B]
  7. Science and Technology Project of Suzhou, China [SZS201508]
  8. Provincial International Technology Cooperation Project of Qinghai, China [2014-HZ-819, 2015-HZ-811]
  9. National International Science and Technology Cooperation Project, China [2015DFR50990]
  10. National science project of science and engineering of Qinghai University of Nationalities [2017XJQ07]

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A high-performance fiber-shaped integrated multifunctional sensing system was designed and fabricated based on flexible fiber-shaped supercapacitors (FFSCs) and humidity sensors. A facile and cost-effective method was proposed to grow three-dimensional MnO2 nanoballs (NBs)@Ni cone/carbon nanotube (CNT) film with a high specific capacitance of 609.06 mF cm(-2) at a current density of 0.5 mA/cm(2). In addition, asymmetric coaxial FFSCs (ACFFSCs) with a maximum operating voltage of 1.8 V were assembled by wrapping MnO2 NBs@Ni cone/CNT film on MoS2 nanosheet arrays/carbon nanotube fibers as the inner and outer electrodes of the ACFFSCs device, respectively, with poly(vinyl alcohol)/KOH as the gel electrolyte. The assembled ACFFSCs device embraces a high specific capacitance of 195.38 mF cm(-2), and a superior areal energy density of 83.59 mu Wh cm(-2). Moreover, the ACFFSCs device acts as the stable power supply for the coaxial fibrous humidity sensor, and the obtained flexible humidity sensing system possesses high sensitivity (2.483/% RH) in the detection of relative humidity (RH), with a fast response speed of 0.39 s.

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