Search Results - "Gandhiraman, R. P."
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Reactive amine surfaces for biosensor applications, prepared by plasma-enhanced chemical vapour modification of polyolefin materials
Published in Biosensors & bioelectronics (15-04-2010)“…Here we have demonstrated a solventless plasma-based process that integrates low-cost, high throughput, high reproducibility and ecofriendly process for the…”
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Plasma Surface Modification of Cyclo-olefin Polymers and Its Application to Lateral Flow Bioassays
Published in Langmuir (15-09-2009)“…The modification of cyclo-olefin polymer Zeonor by plasma-enhanced chemical vapor deposition to form a silica-like surface and evaluation of its application…”
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Influence of ion bombardment on the surface functionalization of plasma deposited coatings
Published in Surface & coatings technology (25-08-2009)“…This paper investigates the influence of ion bombardment on surface functionalization of hybrid organic–inorganic coatings deposited by plasma enhanced…”
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Protein pattern transfer for biosensor applications
Published in Biosensors & bioelectronics (15-02-2010)“…This paper presents a very simple, industrially scalable method for transferring a high-resolution, biologically active protein pattern from one substrate to…”
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Evaluation of a Range of Surface Modifications for the Enhancement of Lateral Flow Assays on Cyclic Polyolefin Micropillar Devices
Published in Plasma processes and polymers (14-10-2009)“…We report the evaluation of a range of surface modifications for the formation of a stable, uniform, hydrophilic surface on cyclic polyolefin‐based…”
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Low temperature growth technique for nanocrystalline cuprous oxide thin films using microwave plasma oxidation of copper
Published in Materials letters (15-03-2012)“…We report on the direct formation of phase pure nanocrystalline cuprous oxide (Cu 2O) film with band gap ~ 2 eV by microwave plasma oxidation of pulsed dc…”
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Deposition of chemically reactive and repellent sites on biosensor chips for reduced non-specific binding
Published in Colloids and surfaces, B, Biointerfaces (01-08-2010)“…The performances of new polymeric materials with excellent optical properties and good machinability have led the biomedical diagnostics industry to develop…”
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