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Journal ArticleDOI

Wearable and Miniaturized Sensor Technologies for Personalized and Preventive Medicine

TLDR
A review of achievements and standing challenges for the development of non‐invasive personalized and preventive medicine devices and directions for future research in miniaturized medical sensor technologies are provided.
Abstract
The unprecedented medical achievements of the last century have dramatically improved our quality of life. Today, the high cost of many healthcare approaches challenges their long-term financial sustainability and translation to a global scale. The convergence of wearable electronics, miniaturized sensor technologies, and big data analysis provides novel opportunities to improve the quality of healthcare while decreasing costs by the very early stage detection and prevention of fatal and chronic diseases. Here, some exciting achievements, emerging technologies, and standing challenges for the development of non-invasive personalized and preventive medicine devices are discussed. The engineering of wire- and power-less ultra-thin sensors on wearable biocompatible materials that can be placed on the skin, pupil, and teeth is reviewed, focusing on common solutions and current limitations. The integration and development of sophisticated sensing nanomaterials are presented with respect to their performance, showing exemplary implementations for the detection of ultra-low concentrations of biomarkers in complex mixtures such as the human sweat and breath. This review is concluded by summarizing achievements and standing challenges with the aim to provide directions for future research in miniaturized medical sensor technologies.

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Journal ArticleDOI

Conducting Polymers in the Fields of Energy, Environmental Remediation, and Chemical–Chiral Sensors

TL;DR: Electroanalysis as chemical sensors in solution, gas phase, and chiral molecules for conducting polymers applications is focused exclusively on energy, use in environmental remediation, and adsorption of pollutants.
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Flexible and Stretchable Smart Display: Materials, Fabrication, Device Design, and System Integration

TL;DR: In this paper, the development of high performance light-emitting devices with flexible and stretchable form factors is described. But the development is mainly achieved by replacing the rigid materials in the device components with flex...
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Two-Dimensional Transition Metal Dichalcogenides and Metal Oxide Hybrids for Gas Sensing.

TL;DR: This Review aims to comprehend the sensing mechanisms and the synergistic effects of various hybridizations of 2D TMDs and metal oxides, and to clearly understand the collective benefits of TMD's and metal oxide hybrids.
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Self-Powered and Self-Functional Cotton Sock Using Piezoelectric and Triboelectric Hybrid Mechanism for Healthcare and Sports Monitoring

TL;DR: A self-powered and self-functional sock (S2-sock) to realize diversified functions including energy harvesting and sensing various physiological signals, i.e., gait, contact force, sweat level, etc., by hybrid integrating poly(3,4-ethylenedioxythiophene) polystyrenesulfonate (PEDOT:PSS)-coated fabric triboelectric nanogenerator (TENG) and lead zirconate titanate
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Portable biosensing devices for point-of-care diagnostics: Recent developments and applications

TL;DR: Recent developments on the application of various types of portable biosensing devices with focus on smartphone-enabled biosensing in which analysis, diagnostics, and communications are coupled are described.
References
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Journal ArticleDOI

Sweating: its composition and effects on body fluids*

TL;DR: The intent of the following discussion will be to detail the composition of sweat and to describe the alterations in body fluid compartments during prolonged exercise, attention will be given to the changes in water and electrolyte contents of muscles and plasma during exercise of long duration.
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Ultraporous Electron‐Depleted ZnO Nanoparticle Networks for Highly Sensitive Portable Visible‐Blind UV Photodetectors

TL;DR: A hierarchical nano- and microstructured morphology for visible-blind UV photo-detectors is developed, which provides record-high milliampere photocurrents, nanoampere dark currents, and excellent selectivity to ultralow UV light intensities.
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Simultaneous analysis of 28 urinary VOC metabolites using ultra high performance liquid chromatography coupled with electrospray ionization tandem mass spectrometry (UPLC-ESI/MSMS)

TL;DR: A method using reversed-phase ultra high performance liquid chromatography (UPLC) coupled with electrospray ionization tandem mass spectrometry (ESI/MSMS) to simultaneously quantify 28 urinary VOC metabolites as biomarkers of exposure is developed.
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Biofuel cell as a power source for electronic contact lenses

TL;DR: Experimental proof that microscale cofactor- and membrane-less, direct electron transfer based enzymatic fuel cells do produce significant amounts of electrical energy in human lachrymal liquid (tears) and theoretical calculations regarding the maximum recoverable electrical energy can be extracted from the biofuel and the biooxidant, glucose and molecular oxygen fully support the belief that biofuel cells can be used as electrical power sources for so called smart contact lenses.
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A contact lens with integrated telecommunication circuit and sensors for wireless and continuous tear glucose monitoring

TL;DR: An integrated functional contact lens, composed of a differential glucose sensor module, metal interconnects, sensor read-out circuit, antenna and telecommunication circuit, to monitor tear glucose levels wirelessly, continuously and non-invasively is presented.
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