The fabrication of ion-selective electrodes (ISEs) via printing technologies such as screen-printing, inkjet printing, and 3D printing is attracting increasing attention due to the superb reproducibility and scalability of these technologies. In contrast to traditional manual casting, coating, and assembling procedures often used in research labs, printing methods are much more compatible with manufacturing processes in industry and, therefore, are easier to scale up. In this paper, we first summarized and compared the printing mechanisms and ink requirements of screen printing, inkjet printing, and 3D printing technologies. Then we present an overview of how different printing technologies can create sensor components, such as electrical contact layers, ion-to-electron transduction layers, ion sensing membranes, reference electrode membranes, insulation layers, and microfluidic/detection housings. The printing protocol, ink material, and sensor performance are highlighted for a few selected ISEs. This review concludes with a summary of the advantages and drawbacks of various printing technologies.
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http://dx.doi.org/10.1016/j.sbsr.2024.100650 | DOI Listing |
Mol Ecol Resour
March 2025
Museum für Naturkunde, Center for Integrative Biodiversity Discovery, Leibniz-Institut für Evolutions-Und Biodiversitätsforschung, Berlin, Germany.
Widespread insect decline necessitates the development and use of standardized protocols for regular monitoring. These methods have to be rapid, efficient and cost-effective to allow for large-scale implementation. Many insect sampling and molecular methods have been developed.
View Article and Find Full Text PDFJ Esthet Restor Dent
March 2025
University of Florida, College of Dentistry, Gainesville, Florida, USA.
Objectives: This in vitro study evaluated the effects of simulated toothbrushing on surface roughness, gloss, and color stability of milled and printed resin-based and lithium disilicate materials for permanent dental restorations.
Materials And Methods: Five materials were tested, including CAD/CAM prepolymerized resin blocks, a ceramic material, a resin composite and a newly FDA-cleared 3D-printed resin for permanent crowns. Specimens underwent a controlled brushing protocol simulating 5 years of brushing (50,000 cycles).
Small Methods
March 2025
Future Energy and Innovation Laboratory, Central European Institute of Technology, Brno University of Technology (CEITEC-BUT), Purkyňova 123, Brno, 61200, Czech Republic.
Ensuring food quality and safety according to stringent global standards requires analytical procedures that are accurate, cost-effective, and efficient. This present innovative high-throughput microrobots designed for the detection of antioxidants in food samples. These microrobots consist of photocatalytic bismuth subcarbonate anchored on silica-coated magnetite nanoparticles.
View Article and Find Full Text PDFAdv Mater
March 2025
Department of Materials Science & Engineering, Yonsei University, Seoul, 03722, Republic of Korea.
Electromyography (EMG) is a widely used diagnostic technique for evaluating the electrical activity of muscles and their controlling nerves. However, conventional surface electrodes with planar structures often suffer from low spatial resolution and suboptimal signal quality. Here, 3D-shaped, substrate-free, soft, and biocompatible liquid metal electrodes (LMe) are presented as a wearable interface for neuromuscular signal recording.
View Article and Find Full Text PDFHeliyon
February 2025
Department of Tissue Engineering and Applied Cell Sciences, School of Medicine, Qom University of Medical Sciences, Qom, Iran.
The repair of damaged peripheral nerves and the following restoration of functionality remain significant therapeutic challenges. Hollow nerve conduits currently available do not align with the ideal human model. Successfully mending nerve gaps requires incorporating biomimetic and functional features into neural conduit design.
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