A series of essentially colorless aromatic polyimide films was synthesized and characterized with the objective of obtaining maximum optical transparency for applications in space. Optical transparency is a requirement for high performance polymeric films used in second surface mirror coatings on thermal control systems. The intensity in color of aromatic polyimide films was lowered by reducing the electronic interaction between chromophoric centers in the polymer molecular structure and by using highly purified monomers. The resulting lightly colored to colorless polyimide films were characterized by UV-visible and infrared spectroscopy before and after exposure to 300 equivalent solar hours UV irradiation and varying doses of 1 MeV electr...
A high-temperature stable, optically transparent, low dielectric aromatic polyimide is prepared by c...
UV degradation of polyimide films in air and vacuum were studied using UV-visible, ESR, FTIR, and XP...
Electroconductive and reflective metallized polyimide films have been prepared by heterogeneous chem...
Several series of linear aromatic polyimide films have been synthesized and characterized with the o...
Polyimides displaying low color in thin films, atomic oxygen resistance, vacuum ultraviolet radiatio...
Polyimides of a recently developed type have an attractive combination of properties, including low ...
This paper reviews the development of new high-temperature polymeric materials applicable to plastic...
This paper reviews the development of new high-temperature polymeric materials applicable to plastic...
Optically transparent polymer films with excellent thermal and ultraviolet (UV) resistance have been...
A series of soluble, fully aromatic polyetherimides were prepared as candidate materials for optical...
We studied thermo-optical property degradation of indium tin oxide (ITO)-coated aluminized polyimide...
Space environment effects on candidate materials for the solar sail film are determined. Polymers, i...
We studied thermo-optical property degradation of indium tin oxide (ITO)-coated aluminized polyimide...
Driven by the emerging development of transparent and flexible electronics, colorless polyimide (CPI...
In this study, we intend to solve the problem of the low glass transition temperature (Tg) and the h...
A high-temperature stable, optically transparent, low dielectric aromatic polyimide is prepared by c...
UV degradation of polyimide films in air and vacuum were studied using UV-visible, ESR, FTIR, and XP...
Electroconductive and reflective metallized polyimide films have been prepared by heterogeneous chem...
Several series of linear aromatic polyimide films have been synthesized and characterized with the o...
Polyimides displaying low color in thin films, atomic oxygen resistance, vacuum ultraviolet radiatio...
Polyimides of a recently developed type have an attractive combination of properties, including low ...
This paper reviews the development of new high-temperature polymeric materials applicable to plastic...
This paper reviews the development of new high-temperature polymeric materials applicable to plastic...
Optically transparent polymer films with excellent thermal and ultraviolet (UV) resistance have been...
A series of soluble, fully aromatic polyetherimides were prepared as candidate materials for optical...
We studied thermo-optical property degradation of indium tin oxide (ITO)-coated aluminized polyimide...
Space environment effects on candidate materials for the solar sail film are determined. Polymers, i...
We studied thermo-optical property degradation of indium tin oxide (ITO)-coated aluminized polyimide...
Driven by the emerging development of transparent and flexible electronics, colorless polyimide (CPI...
In this study, we intend to solve the problem of the low glass transition temperature (Tg) and the h...
A high-temperature stable, optically transparent, low dielectric aromatic polyimide is prepared by c...
UV degradation of polyimide films in air and vacuum were studied using UV-visible, ESR, FTIR, and XP...
Electroconductive and reflective metallized polyimide films have been prepared by heterogeneous chem...