Ganesh K. Kannarpady
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Researcher
Also affiliated: Applied Nanotech (United States) (2014–2019); National Institute for Research and Development of Isotopic and Molecular Technologies (2010)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Ganesh K. Kannarpady's research focuses on the intersection of materials science and biological applications, with a particular emphasis on nanomaterials and their use in biosensing and biocompatible materials. His work investigates the properties and applications of various materials, including metal nanoparticles and urethane films, in biological contexts. Kannarpady has explored the biocompatibility of ether-based urethane films with dendritic cells and studied the potential of gold and silver nanoparticles for various applications.
His recent publications highlight a diverse range of research interests. These include the development of biosensors for detecting circulating tumor cells using quartz crystal resonators and the application of cavity perturbation methods for evaluating hematocrit via dielectric properties. He has also contributed to the understanding of chemical etching processes for glasses. Kannarpady leads a research group and has a scholarly profile marked by 59 publications, 1,146 citations, and an h-index of 22, designating him as a highly cited researcher. He has collaborated with researchers from the University of Arkansas at Little Rock and the University of Arkansas for Medical Sciences.
Metrics
- h-index: 22
- Publications: 59
- Citations: 1,152
Selected Publications
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The cavity perturbation method for evaluating hematocrit via dielectric properties (2023)
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Biosensor Design for the Detection of Circulating Tumor Cells Using the Quartz Crystal Resonator Technique (2023)
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Chemical etching of glasses in hydrofluoric Acid: A brief review (2021)
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Dendritic cell biocompatibility of ether‐based urethane films (2021)
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Graphene-based 2D constructs for enhanced fibroblast support (2020)
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Optimizing Lignosulfonic Acid-Grafted Polyaniline as a Hole-Transport Layer for Inverted CH<sub>3</sub>NH<sub>3</sub>PbI<sub>3</sub>Perovskite Solar Cells (2020)
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One-step synthesis of a steel-polymer wool for oil-water separation and absorption (2019)
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Simultaneous Electrochemical Deposition of Cobalt Complex and Poly(pyrrole) Thin Films for Supercapacitor Electrodes (2019)
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Multiscale composite membrane with carbon nanofibers with tunable characteristics from superhydrophilic to superhydrophobic (2019)
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Quantification of cellular associated graphene and induced surface receptor responses (2019)
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High temperature, transparent, superhydrophobic Teflon AF-2400/Indium tin oxide nanocomposite thin films (2018)
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Polyurethane/nano-hydroxyapatite composite films as osteogenic platforms (2018)
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Chitosan‐Derived NiO‐Mn <sub>2</sub> O <sub>3</sub> /C Nanocomposites as Non‐Precious Catalysts for Enhanced Oxygen Reduction Reaction (2018)
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Fabrication of transparent superhydrophobic polytetrafluoroethylene coating (2018)
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Facile fabrication of a free-standing superhydrophobic and superoleophilic carbon nanofiber-polymer block that effectively absorbs oils and chemical pollutants from water (2017)
Collaboration Network
Top Collaborators
- Dendritic cell biocompatibility of ether‐based urethane films
- Dendritic cell biocompatibility of ether‐based urethane films
- Dendritic cell biocompatibility of ether‐based urethane films
- Dendritic cell biocompatibility of ether‐based urethane films
- Dendritic cell biocompatibility of ether‐based urethane films
- Dendritic cell biocompatibility of ether‐based urethane films
- Dendritic cell biocompatibility of ether‐based urethane films
- Dendritic cell biocompatibility of ether‐based urethane films
- Dendritic cell biocompatibility of ether‐based urethane films
- Dendritic cell biocompatibility of ether‐based urethane films
- Chemical etching of glasses in hydrofluoric Acid: A brief review
- Chemical etching of glasses in hydrofluoric Acid: A brief review
- Chemical etching of glasses in hydrofluoric Acid: A brief review
- Chemical etching of glasses in hydrofluoric Acid: A brief review
- Chemical etching of glasses in hydrofluoric Acid: A brief review
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