Gregory M. Harbers
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2
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About
Gregory M. Harbers is a leading researcher in the fields of biosensing, surface chemistry, and molecular diagnostics, with a particular focus on the characterization of DNA-modified surfaces. His work has significantly advanced the understanding of how nucleic acids interact with solid supports, a critical foundation for developing next-generation diagnostic tools and biosensors. Harbers’ most notable contribution is his comprehensive study, "Multi-technique Characterization of DNA-Modified Surfaces for Biosensing and Diagnostic Applications" (2014), which has garnered 2 citations. This seminal paper integrates multiple analytical methods—including fluorescence, electrochemistry, and surface plasmon resonance—to provide a holistic view of DNA immobilization, density, and accessibility on surfaces. By establishing robust characterization protocols, Harbers has enabled more reliable and reproducible biosensor designs, directly impacting fields from point-of-care diagnostics to environmental monitoring. His work is essential for researchers and students aiming to bridge the gap between fundamental surface science and practical device engineering, offering a methodological roadmap for optimizing DNA-based sensors. Through these efforts, Harbers has cemented his role as a key contributor to the advancement of bioanalytical chemistry.
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Top Papers
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