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MWCNT modified Ni-Fe LDH/BiVO4 heterojunction: boosted visible-light-driven photoelectrochemical aptasensor for ofloxacin detection.


ABSTRACT: Sensitivity and selectivity, which can be identified by the photosensitivity of materials and the identification of elements, are two important factors for a photoelectrochemical aptasensor (PEC aptasensor). Herein, a patent PEC aptasensor for specifically detecting ofloxacin (OFL) was exploited, and a visible-light-active MWCNT/LDH/BiVO4 heterostructure was introduced as a photoactive material and identification elements, respectively. The combination of LDH with BiVO4 enhanced the photocurrent response, and MWCNT provided higher electron conductivity, which are advantageous for structuring PEC sensors. Furthermore, the two-pot synthesis of MWCNT/LDH/BiVO4 has the advantage of possessing an environmentally friendly character. Under optimal conditions, the photocurrent response of MWCNT/LDH/BiVO4 presents a linear trend with OFL concentration from 0.1 to 16 000 nM, and the limit of detection (S/N = 3) is as low as 0.03 nM. This new PEC sensing device afforded an ultra-sensitive sensor which has high selectivity and stability for detecting OFL.

SUBMITTER: Qi X 

PROVIDER: S-EPMC9412155 | biostudies-literature | 2022 Aug

REPOSITORIES: biostudies-literature

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MWCNT modified Ni-Fe LDH/BiVO<sub>4</sub> heterojunction: boosted visible-light-driven photoelectrochemical aptasensor for ofloxacin detection.

Qi Xuejun X   Tao Shuyan S  

RSC advances 20220826 37


Sensitivity and selectivity, which can be identified by the photosensitivity of materials and the identification of elements, are two important factors for a photoelectrochemical aptasensor (PEC aptasensor). Herein, a patent PEC aptasensor for specifically detecting ofloxacin (OFL) was exploited, and a visible-light-active MWCNT/LDH/BiVO<sub>4</sub> heterostructure was introduced as a photoactive material and identification elements, respectively. The combination of LDH with BiVO<sub>4</sub> enh  ...[more]

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