A copper sulfide-hydroxypropyl $\beta$-Cyclodextrin-reduced graphene oxide composite for highly sensitive electrochemical detection of 5-hydroxytryptamine in biological samples
Aravindan Santhan, Kuo Yuan Hwa, Slava V. Rotkin, Cheng-Han Wang, Chun-Wei Ou

TL;DR
This paper presents a novel composite material combining copper sulfide, hydroxypropyl β-cyclodextrin, and reduced graphene oxide for highly sensitive electrochemical detection of serotonin in biological samples, with excellent selectivity and low detection limits.
Contribution
The study introduces a new $Cu_2S/H{eta}cd-rGO$ hybrid electrocatalyst that enhances electrochemical detection performance of serotonin compared to existing methods.
Findings
Broad linear detection ranges for serotonin
Lower detection limit of 1.2 nM
High selectivity against interferents
Abstract
The precise identification of neurotransmitters is essential for comprehending cerebral function, detecting neurological conditions, and formulating successful therapeutic approaches. The present work investigates the electrochemical detection of serotonin with the excellent hybrid electrocatalyst . , with its significant features as improved catalytic activity and enhanced charge transfer when combined with , will enhance the performance. The integration of with , regulated by the van der Waals force and the electrostatic interaction, makes it a stable catalyst without disrupting the composite structure. Also, the aggregation of the with the layered sheets of rGO can be highly reduced and resulting in the improvement of the conductivity. Thus, the above features resulted in the improved oxidation…
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Taxonomy
TopicsElectrochemical sensors and biosensors · Dye analysis and toxicity · Neurotransmitter Receptor Influence on Behavior
