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Nanoindentation mechanical properties characterization of glassy polymeric carbon treated with ion beam
(Elsevier B.V., 2002-05-01)
Phenolic resins when heat treated in inert atmosphere up to 1000 degreesC become glassy polymeric carbon (GPC), a chemically inert and biocompatible material useful for medical applications, such as in the manufacture of ...
Nanoindentation mechanical properties characterization of glassy polymeric carbon treated with ion beam
(Elsevier B.V., 2002-05-01)
Phenolic resins when heat treated in inert atmosphere up to 1000 degreesC become glassy polymeric carbon (GPC), a chemically inert and biocompatible material useful for medical applications, such as in the manufacture of ...
Electrocatalytic reduction of carbon dioxide at polymeric cobalt tetra (3-amino (phenyl) porphyrin glassy carbon-modified electrodes
(SOCIEDAD CHILENA DE QUÍMICA, 2003)
Determination of caffeic acid in red wine by voltammetric method
(Wiley-v C H Verlag Gmbh, 2008-06-01)
The electrochemical oxidation of 3,4-dihydroxycinnamic acid, caffeic acid, leads to a stable electroactive poly(caffeic acid) thin film containing quinone moiety on a preactivated glassy polymeric carbon electrode. The ...
Determination of caffeic acid in red wine by voltammetric method
(Wiley-v C H Verlag Gmbh, 2008-06-01)
The electrochemical oxidation of 3,4-dihydroxycinnamic acid, caffeic acid, leads to a stable electroactive poly(caffeic acid) thin film containing quinone moiety on a preactivated glassy polymeric carbon electrode. The ...
Effects of ion beam on nanoindentation characteristics of glassy polymeric carbon surface
(Elsevier B.V., 2005-06-22)
Glassy polymeric carbon (GPC) is a useful material for medical applications due to its chemical inertness and biocompatible characteristics. Mitral and aortic and hydrocephalic valves are examples of GPC prosthetic devices ...
Effects of ion beam on nanoindentation characteristics of glassy polymeric carbon surface
(Elsevier B.V., 2005-06-22)
Glassy polymeric carbon (GPC) is a useful material for medical applications due to its chemical inertness and biocompatible characteristics. Mitral and aortic and hydrocephalic valves are examples of GPC prosthetic devices ...
Electrochemical reduction of s(iv) species in aqueous medium by glassy carbon electrodes modified with polymeric copper(ii)tetra-aza-annulene complexes
(GORDON AND BREACH SCIENCE PUBLISHERS, 2009)
Electrochemical oxidation of sulfite in aqueous solution by glassy carbon electrode modified with polymeric co(ii) meso-tetrakis (2-thienyl)porphyrin
(ELECTROCHEMICAL SCIENCE GROUP, 2012)