2021
DOI: 10.1016/j.jpcs.2021.110235
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Fabrication of porous polyaniline/MWCNTs coated Co9S8 composite for electrochemical hydrogen storage application

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Cited by 21 publications
(5 citation statements)
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“…In 2021, Sun et al , achieved the preparation of sea urchin-like porous polyaniline (PPANI) via chemical synthesis method in saturated solution, and obtained PPANI/MWCNTs retaining the special porous morphology of PPANI via a self-assembly method. 81 Due to the strong π–π interaction between PANI and MWCNTs, stable composite materials can be obtained by self-assembly method. With the formation of porous structures, the specific surface area of PANI and PPANI/MWCNTs is significantly increased.…”
Section: Conducting Polymer Nanocomposites and Their Nanostructuresmentioning
confidence: 99%
“…In 2021, Sun et al , achieved the preparation of sea urchin-like porous polyaniline (PPANI) via chemical synthesis method in saturated solution, and obtained PPANI/MWCNTs retaining the special porous morphology of PPANI via a self-assembly method. 81 Due to the strong π–π interaction between PANI and MWCNTs, stable composite materials can be obtained by self-assembly method. With the formation of porous structures, the specific surface area of PANI and PPANI/MWCNTs is significantly increased.…”
Section: Conducting Polymer Nanocomposites and Their Nanostructuresmentioning
confidence: 99%
“…It was reported that polyaniline could store up to 6–8 wt % of hydrogen . Porous polyaniline P-PANI facilitates the hydrogen diffusion and reaction kinetics of the hydrogen storage alloys. , Polyacrylamide blending with ammonia borane enables the dehydrogenation of the polymeric composite to occur at a lower temperature with enhanced hydrogen purity . Although hydrogen storage by means of physisorption has some limitations, polymers seem to be very promising materials, owing to their high potential for structural and functional tuning, as well as good thermal and chemical stability.…”
Section: Hydrogen Productionmentioning
confidence: 99%
“…More specifically, MWCNTs are still the most promising candidate for developing nextgeneration transparent energy storage and conversion technology [125]. For the first time, Sun et al [126] developed a porous polyaniline/multi-walled carbon nanotube-based Co 9 S 8 (Co 9 S 8 +PPANI/MWCNT) composite that can act as a next-generation electrochemical hydrogen storage device and achieved a discharge capacity value of 689.2 mAh g −1 . Interestingly, the spherical shaped nanoparticle of Pt 2 Ir/MWCNT composite has become a well-balanced bi-functional electrocatalyst, and more specifically a fresh active catalyst surface through electrode materials that play an important role in the development of direct methanol fuel cell applications.…”
Section: Multi-walled Carbon Nanotube-based Electrode Materialsmentioning
confidence: 99%