2021
DOI: 10.1016/j.colsurfa.2021.127110
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Preparation and electrochemical sensor application of tetra aniline/graphene oxide/gold nanoparticle composites`

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Cited by 7 publications
(3 citation statements)
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“…Consequently, it possess unique electrical, chemical, and optical properties and has numerous advanced applications including bioseparating materials, electrochemical sensors, supercapacitors, and mediators for enhancing differentiation of neural stem cells or facilitating the photothermal effect for cancer therapy. 21,27–30…”
Section: Resultsmentioning
confidence: 99%
“…Consequently, it possess unique electrical, chemical, and optical properties and has numerous advanced applications including bioseparating materials, electrochemical sensors, supercapacitors, and mediators for enhancing differentiation of neural stem cells or facilitating the photothermal effect for cancer therapy. 21,27–30…”
Section: Resultsmentioning
confidence: 99%
“…12,13 Therefore, the replacement of polyaniline in the PANI/nanoparticle Si (PANI/nc-Si) composite by well-structured oligoanilines may open new possibilities for the practical use of such composites. 14,15 To date, we are aware of publications in which the properties of tetraaniline/graphene composites are studied; 16,17 however, there is no information on similar studies regarding tetraaniline/nanoparticles Si composites. At the same time, TANI/Si nanoparticles composites are just as promising elements for their use in supercapacitors as TANI/ graphene composites.…”
Section: Introductionmentioning
confidence: 99%
“…The conductivity of aniline oligomers is expected to be lower than that of PANI as a result of the reduced conjugation length. However, this lower conductivity may be compensated by the improved self-organization in the structure of the oligomer-based materials as compared to PANI, thus providing a better opportunity to design and produce well-characterized electroactive materials with defined properties, good processability, and high enough charge carrier mobilities. , Therefore, the replacement of polyaniline in the PANI/nanoparticle Si (PANI/nc-Si) composite by well-structured oligoanilines may open new possibilities for the practical use of such composites. , To date, we are aware of publications in which the properties of tetraaniline/graphene composites are studied; , however, there is no information on similar studies regarding tetraaniline/nanoparticles Si composites. At the same time, TANI/Si nanoparticles composites are just as promising elements for their use in supercapacitors as TANI/graphene composites.…”
Section: Introductionmentioning
confidence: 99%