Related Experiment Video

Updated: Jul 8, 2026

Polymer Microarrays for High Throughput Discovery of Biomaterials
13:37

Polymer Microarrays for High Throughput Discovery of Biomaterials

Published on: January 25, 2012

Combinatorial and high-throughput development of sensing materials: the first 10 years

Radislav A Potyrailo1, Vladimir M Mirsky

  • 1Chemical and Biological Sensing Laboratory, Materials Analysis and Chemical Sciences, General Electric Global Research, Niskayuna, NY 12309, USA. Potyrailo@crd.ge.com

Chemical Reviews
|January 24, 2008
PubMed
Summary

No abstract available in PubMed .

More Related Videos

A Guided Materials Screening Approach for Developing Quantitative Sol-gel Derived Protein Microarrays
10:44

A Guided Materials Screening Approach for Developing Quantitative Sol-gel Derived Protein Microarrays

Published on: August 26, 2013

Synthetic Methodology for Asymmetric Ferrocene Derived Bio-conjugate Systems via Solid Phase Resin-based Methodology
07:07

Synthetic Methodology for Asymmetric Ferrocene Derived Bio-conjugate Systems via Solid Phase Resin-based Methodology

Published on: March 12, 2015

Related Experiment Videos

Last Updated: Jul 8, 2026

Polymer Microarrays for High Throughput Discovery of Biomaterials
13:37

Polymer Microarrays for High Throughput Discovery of Biomaterials

Published on: January 25, 2012

A Guided Materials Screening Approach for Developing Quantitative Sol-gel Derived Protein Microarrays
10:44

A Guided Materials Screening Approach for Developing Quantitative Sol-gel Derived Protein Microarrays

Published on: August 26, 2013

Synthetic Methodology for Asymmetric Ferrocene Derived Bio-conjugate Systems via Solid Phase Resin-based Methodology
07:07

Synthetic Methodology for Asymmetric Ferrocene Derived Bio-conjugate Systems via Solid Phase Resin-based Methodology

Published on: March 12, 2015

Related Concept Videos

Microbial Biosensors01:17

Microbial Biosensors

Microbial biosensors are analytical devices that utilize living microbes to detect specific substances through measurable signals. These devices consist of two main components: biosensing organisms and signal-transducing elements. Biosensing organisms, such as Escherichia coli or Saccharomyces cerevisiae, are typically housed in multiwell plates connected to transducers, enabling rapid, real-time detection of target analytes.Signal Generation MechanismWhen a target analyte—such as...

Articles linked to this work by shared authors, journal, and citation graph.

A Sensor to Analyze Fish Freshness: A Virtual Sensor Array Based on an Electrochemical Chemotransistor.

Sensors (Basel, Switzerland)·2026

Conductometric Chemosensor for Saccharides Based on Thin Films of Poly(3-Thienylboronic) Acid: Measurements of Transversal Resistance.

Biosensors·2025

Individual optical multi-gas sensors as next generation second-order unobtrusive and continuous operation analytical instruments.

Mikrochimica acta·2025

Cyclic Voltarefractometry of Single TiO2 Nanoparticles in Large Ensembles in Nonaqueous Electrolyte.

Analytical chemistry·2025

Agglomeration compaction promotes corrosion of gold nanoparticles.

Nanoscale advances·2024

Chemosensitive Properties of Electrochemically Synthesized Poly-3-Thienylboronic Acid: Conductometric Detection of Glucose and Other Diol-Containing Compounds under Electrical Affinity Control.

Polymers·2024

New Particle Formation and Growth in Urban Atmospheres: From Observations to Molecular-Level Understanding.

Chemical reviews·2026

Mechanisms and Manifestations of Ligand Bias in Signaling: Focus on Receptor Tyrosine Kinases.

Chemical reviews·2026

Development and Prospects of Zirconia 3D Printing for Artificial Prosthesis Applications.

Chemical reviews·2026

Function, Structure, and Regulation of Nitrogen Fixation-like Metalloproteins for Nitrogen, Energy, Carbon, and Sulfur Metabolism.

Chemical reviews·2026

Hierarchical Self-Assembly, Nanoarchitectonics, and Emerging Functionalities of Chiral π-Amphiphiles.

Chemical reviews·2026

Photosystem-Based Biophotoelectrodes for Solar Energy Conversion.

Chemical reviews·2026

Thin fabric pressure sensors and TinyML smart gloves for edge IoT.

iScience·2026

Large-Area Noise-Resilient Multiplexing Triboelectric Biomechanical Sensing on Clothing for High-Precision Full-Body Motion Capture in Wearables.

Advanced science (Weinheim, Baden-Wurttemberg, Germany)·2026

Recent Advances in China's Wearable Healthcare Sensors for Chronic, Neurodegenerative, and Cardiovascular Care: A Narrative Review.

Iranian journal of public health·2026

Wearable Technologies for Remote Neurologic Health Monitoring.

Continuum (Minneapolis, Minn.)·2026

Data-Driven Design of Self-Adhesive Epidermal Electrodes and Sensors.

Advanced science (Weinheim, Baden-Wurttemberg, Germany)·2026

Subdermal Insertable Sensors for Health Monitoring: Applications, Challenges, and Emerging Technologies.

Annals of biomedical engineering·2026
See all related articles
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies
Jove
Visualize
Contact Us