LIQUID COATING COMPOSITIONS FOR USE IN METHODS FOR FORMING A SUPERHYDROPHOBIC, SUPEROLEOPHOBIC OR SUPERAMPHIPHOBIC LAYER
    34.
    发明公开
    LIQUID COATING COMPOSITIONS FOR USE IN METHODS FOR FORMING A SUPERHYDROPHOBIC, SUPEROLEOPHOBIC OR SUPERAMPHIPHOBIC LAYER 审中-公开
    液体涂料组合物中的过程,或者制造超疏水,SUPEROLEOPHOBEN或SUPERAMPHIPHOBEN LAYER

    公开(公告)号:EP3164228A1

    公开(公告)日:2017-05-10

    申请号:EP15732741.2

    申请日:2015-07-02

    Abstract: The present invention provides for method for forming a superhydrophobic, superoleophobic or superamphiphobic layer and imparting said property on a surface, comprising the steps of: a. preparing a liquid coating composition comprising a solvent and dispersed silicone nanoparticles, b. optionally priming the surface to form a primed surface on which a superhydrophobic, superoleophobic or superamphiphobic layer is to be formed, c. applying a layer of the liquid coating composition on the surface or primed surface on which the superhydrophobic, superoleophobic or superamphiphobic layer is to be formed, d. evaporating the solvent from the liquid coating composition to form a superhydrophobic, superoleophobic or superamphiphobic layer and impart said property on the surface or primed surface, wherein the dispersed silicone nanoparticles are formed by polymerization of at least one compound of formula I in an aprotic solvent comprising 5 to 500 ppm of water, RaSi(R1)n(X1)3-n (I) wherein Ra is a straight-chain or branched C(1-24) alkyl or alkenyl group, an aromatic group which is linked by a single covalent bond or linked by a straight-chain or branched alkylene unit having 1 to 8 carbon atoms, to the Si-atom, R1 a straight chain or a branched hydrocarbon radical having 1 to 6 carbon atoms, X1 is a hydrolysable group, which is one or more of a halogen or an alkoxy group, and n is 0 or 1, and preferably is 0.

    Abstract translation: 本发明提供了用于方法用于形成超疏水性,或超superamphiphobic层和表面上赋予所述特性,所述方法包括以下步骤:a。 制备液体涂料组合物包含溶剂和分散的硅氧烷纳米颗粒,B。 OPTIONALLY吸表面上以形成涂有底漆的表面,在其超疏水性,或超superamphiphobic层将要形成,C。 施加在表面上的液体涂料组合物或底漆的表面在其上的超疏水性,或超superamphiphobic层将要形成,为d的层。 蒸发从该液体涂料组合物中的溶剂,以形成超疏水性,超疏油性或superamphiphobic层和表面或底漆的表面上赋予所述特性,worin的分散的硅氧烷纳米颗粒通过式I的至少一种化合物的聚合在一个非质子传递溶剂包括形成 5〜500的水ppm的,R的Si(R 1)N(X1)3-n的(I)worin Ra是直链或支链的C(1-24)烷基或链烯基,它是由一个单一的连接的所有芳族基团 共价键或由直链连接的或支链的具有1-8个碳原子的亚烷基单元,与Si原子,R1是直链或具有1至6个碳原子的支链烃基,X1是可水解基团,其是 一个或多个卤素或烷氧基,以及n为0或1,优选是第0

    METHOD OF MANUFACTURING AN ELECTROWETTING DEVICE
    36.
    发明公开
    METHOD OF MANUFACTURING AN ELECTROWETTING DEVICE 审中-公开
    制造电润湿装置的方法

    公开(公告)号:EP3160657A2

    公开(公告)日:2017-05-03

    申请号:EP15738860.4

    申请日:2015-06-30

    Inventor: SCHRAM, Ivar

    Abstract: A method of manufacturing an electrowetting device including dispensing a fluid from a channel and onto a surface of a support plate. The channel is formed by a part of the surface of the support plate, an interface between the fluid and another fluid, and a further surface which is for example a surface of a roller.

    Abstract translation: 一种制造电润湿装置的方法,包括将流体从通道分配到支撑板的表面上。 通道由支撑板的一部分表面,流体与另一种流体之间的界面以及例如为辊的表面的另一表面形成。

    UV CURABLE HYDROPHILIC COATINGS
    37.
    发明授权
    UV CURABLE HYDROPHILIC COATINGS 有权
    UV-HÄRTBAREHYDROPHILE BESCHICHTUNGEN

    公开(公告)号:EP3015513B1

    公开(公告)日:2017-05-03

    申请号:EP15190759

    申请日:2015-10-21

    Inventor: LAW KOCK-YEE

    Abstract: UV curing hydrophilic coating compositions and methods to make and use the compositions are disclosed. The compositions include about 40 wt. percent to about 95 wt. percent of a vinyl ether compound, an epoxide compound, a compound with vinyl ether and epoxy functional groups, or any combination thereof; about 0.1 wt. percent to about 40 wt. percent of at least one polar diluent; about 40 wt. percent or less of at least one non-polar diluent; and about 0.5 wt. percent to about 12 wt. percent of at least one photoinitiator.

    Abstract translation: 公开了UV固化亲水涂料组合物和制备和使用该组合物的方法。 该组合物包含约40wt。 百分比至约95wt。 乙烯基醚化合物,环氧化合物,具有乙烯基醚和环氧官能团的化合物或其任何组合的百分比; 约0.1wt。 百分比至约40wt。 百分比的至少一种极性稀释剂; 约40wt。 百分比或更少的至少一种非极性稀释剂; 和约0.5wt。 百分比至约12wt。 百分比的至少一种光引发剂。

Patent Agency Ranking