Title Enzymatic formation of polyaniline, polypyrrole, and polythiophene nanoparticles with embedded glucose oxidase /
Authors German, Natalija ; Popov, Anton ; Ramanavičienė, Almira ; Ramanavičius, Arūnas
DOI 10.3390/nano9050806
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Is Part of Nanomaterials.. Basel : MDPI. 2019, vol. 9, iss. 5, art. no. 806, p. [1-16].. ISSN 2079-4991. eISSN 2079-4991
Keywords [eng] glucose oxidase ; polyaniline ; polypyrrole ; polythiophene ; nanoparticles ; polymerization ; spectrophotometry
Abstract [eng] Polyaniline (PANI), polypyrrole (Ppy), and polythiophene (PTh) composite nanoparticles with embedded glucose oxidase (GOx) were formed by enzymatic polymerization of corresponding monomers (aniline, pyrrole, and thiophene). The influence of monomers concentration, the pH of solution, and the ratio of enzyme/substrate on the formation of PANI/GOx, Ppy/GOx, and PTh/GOx composite nanoparticles were spectrophotometrically investigated. The highest formation rate of PANI-, Ppy-, and PTh-based nanoparticles with embedded GOx was observed in the sodium acetate buer solution, pH 6.0. The increase of optical absorbance at max = 440 nm, max = 460 nm, and max = 450 nm was exploited for the monitoring of PANI/GOx, Ppy/GOx and PTh/GOx formation, respectively. It was determined that the highest polymerization rate of PANI/GOx, Ppy/GOx, and PTh/GOx composite nanoparticles was achieved in solution containing 0.75 mg mL􀀀1 of GOx and 0.05 mol L􀀀1 of glucose. The influence of the enzymatic polymerization duration on the formation of PANI/GOx and Ppy/GOx composite nanoparticles was spectrophotometrically investigated. The most optimal duration for the enzymatic synthesis of PANI/GOx and Ppy/GOx composite nanoparticles was in the range of 48–96 h. It was determined that the diameter of formed PANI/GOx and Ppy/GOx composite nanoparticles depends on the duration of polymerization using dynamic light scattering technique (DLS), and it was in the range of 41–167 nm and 65–122 nm, when polymerization lasted from 16 to 120 h.
Published Basel : MDPI
Type Journal article
Language English
Publication date 2019