Nanocomposite design of graphene modified TiO2 for electrochemical sensing in phenol detection
This study is the stage of developing a phenol detection electrochemical sensor. Phenol is one of the organic pollutants harmful to human life and ecosystems. The development of this sensor was carried out by studying the use of TiO 2 anatase as a modifier of graphene electrodes. The mass of TiO 2 a...
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Veröffentlicht in: | The Korean journal of chemical engineering 2022, 39(1), 262, pp.209-215 |
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Hauptverfasser: | , , , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | This study is the stage of developing a phenol detection electrochemical sensor. Phenol is one of the organic pollutants harmful to human life and ecosystems. The development of this sensor was carried out by studying the use of TiO
2
anatase as a modifier of graphene electrodes. The mass of TiO
2
anatase was varied, while the mass of graphene and paraffin was fixed. The results showed that the TiO
2
mass of 1.0 g was the best mass as a graphene electrode modifier. The use of this mass increases the oxidation current (I
pa
) of phenol by 450 A, which is observed at an oxidation potential (E
pa
) of −0.30 V. The presence of interfering ions such as K
+
, Fe
2+
, and OH
−
can decrease the measurement current. However, based on the %RSD value, it shows that the performance of TiO
2
-graphene is in a good category, where the %RSD value obtained is 0.6%. TiO
2
-graphene electrodes can be used repeatedly for 12 days. Overall, this work demonstrates the potential of TiO
2
-graphene electrodes as electrode candidates for electrochemical-based phenol sensors. |
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ISSN: | 0256-1115 1975-7220 |
DOI: | 10.1007/s11814-021-0938-6 |