Diamond-like carbon films, amorphous hydrogenated or non-hydrogenated forms of carbon, are metastable amorphous materials characterized by attractive mechanical, optical, electrical, chemical and tribological properties. The films can be prepared at low temperatures by diVerent techniques using a large variety of precursors and can be modified by incorporation of diVerent elements such as N, F, Si or metals. The diversity of methods used for the deposition of diamond-like carbon films provides the flexibility to tailor their properties according to specific needs and potential applications. The hydrogenated form of DLC appears to reach a maturity in understanding its properties and finding old and new practical applications for it. The non-...
Aim of this laboratory-directed research and development (LDRD) project was to develop diamond and/o...
© 2020 American Chemical Society. A film formed of densely packed amorphous carbon nanofibers is syn...
Amorphous carbon has a wide range of properties that are primarily controlled by the different bond ...
Diamond-like carbon (DLC) films have several excellent properties like high hardness, high wear resi...
Diamond-like carbon (DLC) films combine several excellent properties like high hardness, low frictio...
Diamond is the hardest and the best heat conducting material known, transparent in the visible and i...
International audienceDuring the past two decades, diamondlike carbon (DLC) films have attracted an ...
International audienceDuring the past two decades, diamondlike carbon (DLC) films have attracted an ...
It is well known that diamond has an impressive set of properties that would make it an attractive m...
Diamond-like carbon(DLC) films had many unique and outstanding properties such as high thermal condu...
Abstract: Diamond-like carbon (DLC) is a dense, partially sp3 bonded form of amorphous carbon prepar...
International audienceDuring the past decades, diamondlike carbon (DLC) films have attracted an over...
International audienceDuring the past decades, diamondlike carbon (DLC) films have attracted an over...
An overview is given on the deposition, properties and applications of dense amorphous carbon films ...
Diamond-like carbon (DE) films are characterized by very low friction coefficients, high wear resist...
Aim of this laboratory-directed research and development (LDRD) project was to develop diamond and/o...
© 2020 American Chemical Society. A film formed of densely packed amorphous carbon nanofibers is syn...
Amorphous carbon has a wide range of properties that are primarily controlled by the different bond ...
Diamond-like carbon (DLC) films have several excellent properties like high hardness, high wear resi...
Diamond-like carbon (DLC) films combine several excellent properties like high hardness, low frictio...
Diamond is the hardest and the best heat conducting material known, transparent in the visible and i...
International audienceDuring the past two decades, diamondlike carbon (DLC) films have attracted an ...
International audienceDuring the past two decades, diamondlike carbon (DLC) films have attracted an ...
It is well known that diamond has an impressive set of properties that would make it an attractive m...
Diamond-like carbon(DLC) films had many unique and outstanding properties such as high thermal condu...
Abstract: Diamond-like carbon (DLC) is a dense, partially sp3 bonded form of amorphous carbon prepar...
International audienceDuring the past decades, diamondlike carbon (DLC) films have attracted an over...
International audienceDuring the past decades, diamondlike carbon (DLC) films have attracted an over...
An overview is given on the deposition, properties and applications of dense amorphous carbon films ...
Diamond-like carbon (DE) films are characterized by very low friction coefficients, high wear resist...
Aim of this laboratory-directed research and development (LDRD) project was to develop diamond and/o...
© 2020 American Chemical Society. A film formed of densely packed amorphous carbon nanofibers is syn...
Amorphous carbon has a wide range of properties that are primarily controlled by the different bond ...