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Highly Sensitive Wearable Sensor Based on (001)-Orientated TiO for Real-Time Electrochemical Detection of Dopamine, Tyrosine, and Paracetamol. | LitMetric

AI Article Synopsis

  • * Existing sensors for these bioanalytes often lack sensitivity or are complicated to produce, but new advancements introduce a simple method for creating effective titanium dioxide thin films.
  • * The developed TiO film, combined with a carbon cloth electrode, provides high specificity and sensitivity for detecting dopamine, tyrosine, and paracetamol, and can be integrated into wearable devices for real-time health monitoring.

Article Abstract

The concentration of dopamine (DA) and tyrosine (Tyr) reflects the condition of patients with Parkinson's disease, whereas moderate paracetamol (PA) can help relieve their pain. Therefore, real-time measurements of these bioanalytes have important clinical implications for patients with Parkinson's disease. However, previous sensors suffer from either limited sensitivity or complex fabrication and integration processes. This work introduces a simple and cost-effective method to prepare high-quality, flexible titanium dioxide (TiO) thin films with highly reactive (001)-facets. The as-fabricated TiO film supported by a carbon cloth electrode (i.e., TiO-CC) allows excellent electrochemical specificity and sensitivity to DA (1.390 µA µM cm), Tyr (0.126 µA µM cm), and PA (0.0841 µA µM cm). More importantly, accurate DA concentration in varied pH conditions can be obtained by decoupling them within a single differential pulse voltammetry measurement without additional sensing units. The TiO-CC electrochemical sensor can be integrated into a smart diaper to detect the trace amount of DA or an integrated skin-interfaced patch with microfluidic sampling and wireless transmission units for real-time detection of the sweat Try and PA concentration. The wearable sensor based on TiO-CC prepared by facile manufacturing methods holds great potential in the daily health monitoring and care of patients with neurological disorders.

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Source
http://dx.doi.org/10.1002/smll.202312238DOI Listing

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