Search Results - "Flounders, A. W."
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Development of sensors for direct detection of organophosphates. Part I: immobilization, characterization and stabilization of acetylcholinesterase and organophosphate hydrolase on silica supports
Published in Biosensors & bioelectronics (01-12-1999)“…Biosensors for organophosphates in solution may be constructed by monitoring the activity of acetylcholinesterase (AChE) or organophosphate hydrolase (OPH)…”
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FET-Based Biosensors for The Direct Detection of Organophosphate Neurotoxins
Published in Electroanalysis (New York, N.Y.) (01-11-2004)“…Recent world‐wide terrorist events associated with the threat of hazardous chemical agent proliferation, and outbreaks of chemical contamination in the food…”
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Enzyme-based biosensor for the direct detection of fluorine-containing organophosphates
Published in Analytica chimica acta (01-08-2001)“…The ability of the enzyme organophosphorus acid anhydrolase (OPAA) to selectively hydrolyze the PF bond of fluorine containing organophosphates has been used…”
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Development of sensors for direct detection of organophosphates.: Part II: sol–gel modified field effect transistor with immobilized organophosphate hydrolase
Published in Biosensors & bioelectronics (01-01-1999)“…pH-sensitive field effect transistors (FET) were modified with organophosphate hydrolase (OPH) and used for direct detection of organophosphate compounds. OPH…”
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Patterning of immobilized antibody layers via photolithography and oxygen plasma exposure
Published in Biosensors & bioelectronics (1997)“…A novel technique for patterning immobilized antibody layers based upon photolithography and oxygen plasma exposure has been developed. Mouse monoclonal…”
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Immobilization of thiabendazole-specific monoclonal antibodies to silicon substrates via aqueous silanization
Published in Applied biochemistry and biotechnology (01-03-1995)“…Monoclonal antibodies specific for thiabendazole were immobilized to silicon, silicon dioxide, stoichiometric silicon nitride, and silicon-rich silicon nitride…”
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A microneedle-based glucose monitor: fabricated on a wafer-level using in-device enzyme immobilization
Published in TRANSDUCERS '03. 12th International Conference on Solid-State Sensors, Actuators and Microsystems. Digest of Technical Papers (Cat. No.03TH8664) (2003)“…This paper presents a disposable minimally invasive self-calibrating continuous glucose monitor consisting of hollow out-of-plane microneedles to sample…”
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Conference Proceeding -
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Berkeley Micro/NanoLab Affiliate Members Program: A Critical Component of Laboratory Growth and Stability
Published in 2012 19th Biennial University/Government/Industry, Micro/Nano Symposium (UGIM) (01-07-2012)“…In fiscal year 1995, the Berkeley Microlab formalized access to the university laboratory cleanroom and use of the lab's micro/nano-fabrication academic…”
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Conference Proceeding -
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In-device enzyme immobilization: wafer-level fabrication of an integrated glucose sensor
Published in Sensors and actuators. B, Chemical (01-04-2004)“…Wafer-level fabrication of integrated enzyme-based BioMEMS usually requires high temperature wafer-bonding techniques such as anodic bonding. Enzymes denature…”
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Journal Article