Abstract:
The invention relates to fluorine-doped coatings which include a diamond-like composition containing carbon, silicon, oxygen, hydrogen, and fluorine on various substrates. Preferred substrates include flexible substrates, precision-edged substrates, and electrosurgical instruments. The present invention also relates to a method of making a substrate coated with a fluorine-doped diamond-like coating which includes positioning the substrate in a vacuum coating chamber and depositing a diamond-like composition containing carbon, silicon, oxygen, hydrogen, and fluorine onto the substrate by co-deposition of clusterless particle beams comprised of ions, atoms, or radicals of the carbon, silicon, oxygen, hydrogen, and fluorine, the mean free path of each particle species being in excess of the distance between its source and the growing particle coating surface of the substrate.
Abstract:
A method for preserving the precision-edges of a precision-edged substrate by applying to a substrate a corrosion resistant coating comprising a diamond-like solid state material having interpenetrating atomic scale networks comprising a first diamond-like carbon network stabilized by hydrogen, a silicon network stabilized by oxygen, and optionally at least one network made from dopant elements or dopant compounds containing elements from Groups 1-7b and 8 of the periodic table.
Abstract:
A method of making capacitors (25) comprising, providing as the dielectric (27) and/or conductive layers (26), a material made from a diamond-like nanocomposite solid-state material having interpenetrating atomic scale networks of carbon in a diamond-like carbon network stabilized by hydrogen, a glass-like silicon network stabilized by oxygen, and optionally at least one additional network of dopant elements or dopant compounds having elements from Groups 1-7b and 8 of the periodic table.
Abstract:
A method of making capacitors comprising, providing as the dielectric and/or conductive layers, a material made from a diamond-like nanocomposite solid-state material having interpenetrating atomic scale networks of carbon in a diamond-like carbon network stabilized by hydrogen, a glass-like silicon network stabilized by oxygen, and optionally at least one additional network of dopant elements or dopant compounds having elements from Groups 1-7b and 8 of the periodic table.
Abstract:
Se proporciona un método para fabricar capacitores (25) que comprende, proporcionar como las capas dieléctricas (27) y/o conductoras (26) un material fabricado de un material en estado solido de nanocompuestos, similar a diamante que tiene redes a escala atomica interpenetrantes de carbono en una red de carbono similar a diamante estabilizada por hidrogeno, una red de silicio similar a vidrio estabilizada por oxígeno y opcionalmente por los menos una red adicional de elementos como impurezas o compuestos como impurezas que tienen elementos de los grupos 1-7b y 8 de la tabla periodica.
Abstract:
A method for preserving the precision-edges of a precision-edged substrate by applying to a the substrate a corrosion resistant coating comprising a diamond-like solid state material having interpenetrating atomic scale networks comprising a first diamond-like carbon network stabilized by hydrogen, a silicon network stabilized by oxygen, and optionally at least one network made from dopant elements or dopant compounds containing elements from Groups 1-7b and 8 of the periodic table.
Abstract:
A method for preserving the precision-edges of a precision-edged substrate by applying to a the substrate a corrosion resistant coating comprising a diamond-like solid state material having interpenetrating atomic scale networks comprising a first diamond-like carbon network stabilized by hydrogen, a silicon network stabilized by oxygen, and optionally at least one network made from dopant elements or dopant compounds containing elements from Groups 1-7b and 8 of the periodic table.
Abstract:
Se describe un método para preservar los bordes de precision de un sustrato con bordes de precision mediante la aplicacion a un sustrato un revestimiento resistente a la corrosion que comprende un material en estado solido similar a diamante que tiene redes a escala atomica interpenetrantes que comprende una primera red de carbono similar a diamante estabilizada por hidrogeno, una red de silicio estabilizada por oxígeno y opcionalmente por lo menos una red fabricada de elementos como impurezas o compuestos como impurezas que contienen elementos de los grupos 1-7b y 8 de la tabla periodica.