Abstract:
A method of forming a thin barrier layer film (100) of a mixed metal oxide, such as a mixture of aluminum, titanium, and oxygen (AlTiO), comprises sequential exposure of a substrate (110) having a surface temperature less than 100C to a halide precursor, an oxygen plasma, and a metalorganic precursor. Barrier films formed by the method exhibit improved water vapor transmission rate (WVTR) over single metal oxide films and nanolaminates of two metal oxides having a similar overall thickness.
Abstract:
Article optique comprenant un substrat transparent en verre orga¬ nique, un revêtement primaire comprenant du polyuréthane et de la silice particulaire, un revêtement anti-abrasion, et un revêtement an¬ ti-reflets, lesquels revêtements, et en particulier le revêtement an¬ ti-reflets, possèdent une résistance améliorée aux fissures lorsque l'article optique subit de fortes contraintes mécaniques, comme par exemple lors des étapes de débordage et de montage des verres dans les montures de lunettes. L'invention concerne également un procédé de fabrication d'un tel article.
Abstract:
Disclosed is a sheet for forming a hard coating having superior low-temperature formability and slip properties, and a composition for the hard coating which is applied to the sheet. The sheet for forming the hard coating according to the present invention comprises a coating layer formed on one side thereof, wherein the coating layer contains thermosets of the hard coating composition in which UV-curable resins, including (meth)acryloyl functional groups and two or more polycarbonate polyols, are blended.
Abstract:
A laminate donor element can be used to transfer a composite of a metal grid (14) and an electronically conductive polymer (16) to a receiver sheet (22) for use in various devices. The laminate donor element has a donor substrate (12), a metal grid that is disposed over only portions of the donor substrate, leaving portions of the substrate uncovered by the metal grid, and an electronically conductive polymer that covers the portions of the donor substrate that are uncovered by the metal grid. The composite of metal grid and electronically conductive polymer exhibits a peel force of less than or equal to 40 g/cm for separation from the donor substrate at room temperature. The resulting article has a substrate on which a reverse composite of the metal grid and electronically conductive polymer is disposed, which article can be incorporated into various devices.
Abstract translation:叠层施主元件可以用于将金属网格(14)和电子导电聚合物(16)的复合材料转移到用于各种装置的接收片材(22)。 层叠施主元件具有施主衬底(12),金属栅格仅设置在施主衬底的仅部分上,使得衬底的未被金属栅格覆盖的部分和覆盖施主衬底部分的电子导电聚合物 被金属网格覆盖。 金属网格和电子导电聚合物的复合物在室温下表现出小于或等于40g / cm 2的剥离力,用于与施主衬底分离。 所得到的制品具有其上设置有金属网格和电子导电聚合物的反向复合材料的基底,该制品可以结合到各种装置中。
Abstract:
A laminate donor element can be used to transfer a composite of a metal grid and an electronically conductive polymer to a receiver sheet for use in various devices. The laminate donor element has a donor substrate, a metal grid that is disposed over only portions of the donor substrate, leaving portions of the substrate uncovered by the metal grid, and an electronically conductive polymer that covers the portions of the donor substrate that are uncovered by the metal grid. The composite of metal grid and electronically conductive polymer exhibits a peel force of less than or equal to 40 g/cm for separation from the donor substrate at room temperature.
Abstract translation:叠层施主元件可用于将金属网格和电子导电聚合物的复合物转移到用于各种装置的接收片上。 层叠施主元件具有施主衬底,仅设置在供体衬底的仅部分上的金属栅格,留下未被金属栅格覆盖的衬底的部分,以及覆盖未覆盖的施主衬底部分的电子导电聚合物 通过金属网格。 金属网格和电子导电聚合物的复合物在室温下表现出小于或等于40g / cm 2的剥离力,用于与施主衬底分离。
Abstract:
Substratelement für die Beschichtung mit einer Easy-to-clean Beschichtung, wobei die Wirkung der Easy-to-clean Beschichtung durch das Substratelement hinsichtlich ihrer hydrophoben und oleophoben Eigenschaften sowie insbesondere deren Langzeitbeständigkeit verbessert wird. Das Substratelement umfasst vor allem ein Trägermaterial aus Glas oder Glaskeramik und eine Haftvermittlerschicht, welche mit einer Easy-to-clean Beschichtung in eine Wechselwirkung treten kann und ein Mischoxid, insbesondere ein Siliziummischoxid, umfasst.
Abstract:
The invention relates to a substrate comprising a coating for converting radiation energy into heat, said coating comprising a one-dimensional composite structure. Said coatings can be used in particular as absorbers, for example for solar collectors.
Abstract:
Bei einem Isolationselement (1) zur Begrenzung von thermisch zu isolierenden Räumen, wie z.B. Transport- oder Verpackungsbehälter, umfassend ein insbesondere plattenförmiges Trägerelement (2) aus einem eine geringe Wärmeleitfähigkeit aufweisenden Material, wie z.B. ein Polymer, ist das Trägerelement (2) mit einer metallischen Beschichtung (3) versehen, die einen niedrigen Emissionsgrad aufweist, um die Wärmestrahlung zu reduzieren, aber in einer Schichtdicke von