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A highly sensitive and selective hydroquinone sensor based on a newly designed N-rGO/SrZrO3 composite.


ABSTRACT: Herein, we have reported a novel composite of nitrogen doped reduced graphene oxide (N-rGO) and strontium zirconate (SrZrO3). This new composite (N-rGO/SrZrO3) was synthesized using the reflux method. The physicochemical properties of N-rGO/SrZrO3 were determined using different advanced techniques such XRD, FE-SEM, EDX, FTIR and BET. Furthermore, a glassy carbon electrode was modified with N-rGO/SrZrO3 (GCE-2). This modified electrode was employed for the sensing of HQ. The electrochemically active surface area (ECSA) of this modified electrode (GCE-2) was calculated by employing the Randles-Sevcik equation. Furthermore, GCE-2 exhibited a good detection limit (0.61 μM) including high selectivity towards HQ.

SUBMITTER: Ahmad K 

PROVIDER: S-EPMC9417952 | biostudies-literature | 2020 Jan

REPOSITORIES: biostudies-literature

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A highly sensitive and selective hydroquinone sensor based on a newly designed N-rGO/SrZrO<sub>3</sub> composite.

Ahmad Khursheed K   Kumar Praveen P   Mobin Shaikh M SM  

Nanoscale advances 20191209 1


Herein, we have reported a novel composite of nitrogen doped reduced graphene oxide (N-rGO) and strontium zirconate (SrZrO<sub>3</sub>). This new composite (N-rGO/SrZrO<sub>3</sub>) was synthesized using the reflux method. The physicochemical properties of N-rGO/SrZrO<sub>3</sub> were determined using different advanced techniques such XRD, FE-SEM, EDX, FTIR and BET. Furthermore, a glassy carbon electrode was modified with N-rGO/SrZrO<sub>3</sub> (GCE-2). This modified electrode was employed for  ...[more]

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