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Star-Shaped Gold Nanoparticles as Friendly Interfaces for Protein Electrochemistry: the Case Study of Cytochrome c

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Gold nanostars with an average tip-to-tip length of 52±6 nm were functionalized with different capping agents and used as electrode modification materials for protein electrochemistry. Direct electron transfer between cytochrome c and nanostar-coated pyrolytic graphite electrodes was observed with the protein in solution. The electrochemical response was improved at nanostars functionalized with a 1 : 1 mixture of 11-mercaptoundecanoic acid and 4-mercaptobenzoic acid in comparison with gold nanospheres coated with a similar functionalization. Further immobilization of cytochrome c on pyrolytic graphite while conjugated with the same nanostars guaranteed the maintenance of the protein's native properties, whereas direct adsorption on the bare or nanostar-modified electrodes resulted in an altered conformational state. The pseudo-peroxidase activity of the altered cytochrome c was enhanced in the presence of the nanostars.

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UID/QUI/50006/2019 POCI‐01‐0145‐FEDER‐007265 UID/Multi/04378/2019 POCI‐01‐0145‐FEDER‐007728 PTDC/NAN‐MAT/30589/2017 grant NORTE‐01‐0145‐FEDER‐000011 SFRH/BD/132057/2017

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cytochrome c direct electron transfer gold nanostars nanoparticles protein electrochemistry Catalysis Electrochemistry

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