Optimization of an inorganic/bio-organic matrix for the development of new glucose biosensor membranes
暂无分享,去创建一个
[1] S. Cosnier,et al. Improvement of poly(amphiphilic pyrrole) enzyme electrodes via the incorporation of synthetic laponite-clay-nanoparticles. , 1997, Talanta.
[2] Baohong Liu,et al. Characterization of immobilization of an enzyme in a modified Y zeolite matrix and its application to an amperometric glucose biosensor. , 1997, Analytical chemistry.
[3] H. Bau,et al. Sensors: A Comprehensive Survey , 1996 .
[4] S. Cosnier,et al. A new strategy for the construction of amperometric dehydrogenase electrodes based on laponite gel-methylene blue polymer as the host matrix , 1996 .
[5] S. Cosnier,et al. Amperometric detection of pyridine nucleotides via immobilized viologen-accepting pyridine nucleotide oxidoreductase or immobilized diaphorase. , 1996, Talanta.
[6] S. Cosnier,et al. Improvement of the analytical characteristics of an enzyme electrode for free and total cholesterol via laponite clay additives , 1995 .
[7] J. Lowry,et al. Characterization of Glucose Oxidase-Modified Poly(phenylenediamine)-Coated Electrodes in vitro and in vivo: Homogeneous Interference by Ascorbic Acid in Hydrogen Peroxide Detection , 1994 .
[8] Pascal Mailley,et al. Electrochemical immobilization of glucose oxidase in poly(amphiphilic pyrrole) films and its application to the preparation of an amperometric glucose sensor , 1994 .
[9] D. Jed Harrison,et al. Permeability of glucose and other neutral species through recast perfluorosulfonated ionomer films , 1992 .
[10] Adam Heller,et al. Electrical Connection of Enzyme Redox Centers to Electrodes , 1992 .
[11] Mu Shaolin,et al. BIOELECTROCHEMICAL RESPONSES OF THE POLYANILINE GLUCOSE OXIDASE ELECTRODE , 1991 .
[12] C. Malitesta,et al. Glucose fast-response amperometric sensor based on glucose oxidase immobilized in an electropolymerized poly(o-phenylenediamine) film. , 1990, Analytical chemistry.
[13] Alexander M. Yacynych,et al. Electropolymerized 1,2-diaminobenzene as a means to prevent interferences and fouling and to stabilize immobilized enzyme in electrochemical biosensors , 1990 .
[14] P. Labbé,et al. Electrochemical behavior of clay modified electrodes in the presence of cationic surfactant , 1989 .
[15] Pierre Labbe,et al. Adsorption characteristics of polycyclic aromatic compounds on clay: pyrene as a photophysical probe on laponite , 1988 .
[16] Philip N. Bartlett,et al. Electrochemical immobilisation of enzymes: Part I. Theory , 1987 .
[17] G G Guilbault,et al. An enzyme electrode for the amperometric determination of glucose. , 1973, Analytica chimica acta.
[18] G. Hicks,et al. The Enzyme Electrode , 1967, Nature.
[19] L. C. Clark,et al. ELECTRODE SYSTEMS FOR CONTINUOUS MONITORING IN CARDIOVASCULAR SURGERY , 1962 .
[20] D. Schomburg,et al. The 3D structure of glucose oxidase from Aspergillus niger. Implications for the use of GOD as a biosensor enzyme. , 1993, Biosensors & bioelectronics.
[21] John P. Hart,et al. Chemically modified, carbon-based electrodes and their application as electrochemical sensors for the analysis of biologically important compounds. A review , 1992 .
[22] G. Reach,et al. Evaluating in vitro and in vivo the interference of ascorbate and acetaminophen on glucose detection by a needle-type glucose sensor. , 1992, Biosensors & bioelectronics.
[23] G. S. Wilson,et al. Biosensors : fundamentals and applications , 1987 .