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Carbon supported olivine type phosphate framework: a promising electrocatalyst for sensitive detection of dopamine.


ABSTRACT: In this study, a layered olivine-type LiMnPO4/functionalized-multiwall carbon nanotube (f-MWCNTs) composite is used as an electrochemically active material for the real-time detection of dopamine. A wet-chemical ultrasonication process is used to combine LiMnPO4 with f-MWCNTs at room temperature. The composite was subjected to various structural, morphological and electrochemical studies. The blending of olivine-type LiMnPO4 into the f-MWCNTs is revealed by TEM analysis. The electrochemical activities of the LiMnPO4/f-MWCNTs composite are systematically investigated using cyclic voltammetry (CV) and differential pulse voltammetry (DPV) for the real-time detection of dopamine. Furthermore, the applicability of the as prepared LiMnPO4/f-MWCNTs composite was extended for the detection of human serum (E48) and rat brain-serum (C7) samples with satisfactory recoveries for the real-time applications. All these studies revealed that the layered olivine-type LiMnPO4/f-MWCNTs composite is a potential candidate in the field of electrochemical sensing.

SUBMITTER: Nehru R 

PROVIDER: S-EPMC9083883 | biostudies-literature | 2018 Aug

REPOSITORIES: biostudies-literature

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Carbon supported olivine type phosphate framework: a promising electrocatalyst for sensitive detection of dopamine.

Nehru Raja R   Nehru Raja R   Chen Shen-Ming SM  

RSC advances 20180803 49


In this study, a layered olivine-type LiMnPO<sub>4</sub>/functionalized-multiwall carbon nanotube (f-MWCNTs) composite is used as an electrochemically active material for the real-time detection of dopamine. A wet-chemical ultrasonication process is used to combine LiMnPO<sub>4</sub> with f-MWCNTs at room temperature. The composite was subjected to various structural, morphological and electrochemical studies. The blending of olivine-type LiMnPO<sub>4</sub> into the f-MWCNTs is revealed by TEM a  ...[more]

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