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dc.contributor.authorDang Thi Thanh Le-
dc.contributor.otherNguyen Thi Hong Phuc-
dc.contributor.otherMatteo Tonezzer-
dc.contributor.otherVu Quang Khue-
dc.contributor.otherTran Quang Huy-
dc.contributor.otherNguyen Duc Hoa-
dc.contributor.other Nguyen Van Hieu-
dc.date2019-
dc.date.accessioned2020-04-29T07:53:07Z-
dc.date.available2020-04-29T07:53:07Z-
dc.identifier.otherbccb00040-
dc.identifier.urihttps://dlib.phenikaa-uni.edu.vn/handle/PNK/313-
dc.description.abstractThe study is aimed at investigating the stability of electrochemical and biosensing properties of ZnO nanorod-based platinum screen-printed electrodes (SPEs) applied for detection of bacterial pathogens. The platinum SPEs were designed and patterned according to standard photolithography and lift-off process on a silicon wafer. ZnO nanorods (NRs) were grown on the platinum working electrode by the hydrothermal method, whereas Salmonella polyclonal antibodies were selected and immobilized onto ZnO NR surface via a crosslinking process. Morphological and structural characteristics of ZnO NRs were investigated by scanning electron microscopy (SEM), transmission electron microscopy (TEM), and X-ray diffraction (XRD). The results showed that the ZnO NRs were grown vertically on platinum electrodes with a diameter around 20-200 nm and a length of 5-7 μm. These modified electrodes were applied for detection of Salmonella enteritidis at a concentration of 103 cfu/mL by electrochemical measurements including cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). The ZnO NR-modified platinum electrodes could detect Salmonella bacteria well with stable measurements, and the signal to noise ratio was much higher than that of 3 : 1. This study indicated that ZnO NR-modified platinum SPEs could be potential for the development of biochips for electrochemical detection of bacterial pathogens.-
dc.titleStable electrochemical measurements of platinum screen-printed electrodes modified with vertical ZnO nanorods for bacterial detection-
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