HYBRID NANOSCALE PARTICLES
    3.
    发明申请
    HYBRID NANOSCALE PARTICLES 有权
    混合纳米颗粒

    公开(公告)号:US20090283711A1

    公开(公告)日:2009-11-19

    申请号:US12387829

    申请日:2009-05-08

    Abstract: An adsorption method includes the step of adsorbing hybrid particles from a colloidal dispersion of such particles at an interface between the dispersion and a second phase, said hybrid particles comprising: (a) a nanoscale inorganic core having an outer surface, and (b) an organic layer disposed on at least a portion of the surface of the inorganic core and comprising one or more phosphonates according to structure (I): wherein: R1 and R2 are each independently H, or a (C1-C20)hydrocarbon group, R3 is a divalent (C1-C20)hydrocarbon group, R4 and R5 are each independently H or (C1-C2)alkyl, provided that R4 differs from R5, R6 is H or a (C1-C30)hydrocarbon group, m and n are each independently integers of from 0 to about 200, provided that the sum of m+n is at least 1.

    Abstract translation: 吸附方法包括在分散体和第二相之间的界面处从这种颗粒的胶态分散体吸附杂化颗粒的步骤,所述混合颗粒包含:(a)具有外表面的纳米级无机芯,和(b) 有机层设置在所述无机芯的表面的至少一部分上并且包含一种或多种根据结构(I)的膦酸盐:其中:R 1和R 2各自独立地为H或(C 1 -C 20)烃基,R 3为 如果R4不同于R5,R6是H或(C1-C30)烃基,则m和n分别为二价(C1-C20)烃基,R4和R5各自为H或(C1-C2) 独立地为0至约200的整数,条件是m + n的和至少为1。

    SELECTIVE NANOPARTICLE ASSEMBLY SYSTEMS AND METHODS
    7.
    发明申请
    SELECTIVE NANOPARTICLE ASSEMBLY SYSTEMS AND METHODS 有权
    选择性纳米组件系统和方法

    公开(公告)号:US20110244116A1

    公开(公告)日:2011-10-06

    申请号:US13078583

    申请日:2011-04-01

    CPC classification number: B82Y30/00 G03F7/0002

    Abstract: Disclosed are methods and systems for transferring dry or semi-dry nanoparticles onto a substrate. In one embodiment, this includes the steps of providing a roller comprising an elastomeric stamp; transferring nanoparticles in a dry or semi-dry state, and which contact the surface of a donor substrate, from the donor substrate onto the elastomeric stamp; and depositing the dry or semi-dry nanoparticles from the elastomeric stamp onto a receiver substrate by rolling the elastomeric stamp onto the receiver substrate. The substrate, in other embodiments, can have a relief structure.

    Abstract translation: 公开了将干燥或半干燥的纳米颗粒转移到基底上的方法和系统。 在一个实施例中,这包括提供包括弹性体印模的辊的步骤; 将干燥或半干燥状态的纳米颗粒从施主衬底转移到弹性体印模上,并将其与供体衬底的表面接触; 以及通过将弹性体印模滚动到接收器基底上,将来自弹性体印模的干燥或半干燥纳米颗粒沉积到接收器基底上。 在其他实施例中,基板可以具有浮雕结构。

    High definition printing with waterborne inks on non-porous substrates
    8.
    发明授权
    High definition printing with waterborne inks on non-porous substrates 有权
    在无孔基材上进行水性油墨的高分辨印刷

    公开(公告)号:US08025918B2

    公开(公告)日:2011-09-27

    申请号:US12271241

    申请日:2008-11-14

    Abstract: Compositions comprising a silyl-containing copolymer of a monomer system comprising: (A) a silyl-containing monomer having a structural formula (A) Wherein n=1-20, o=1-5 R=O or NH R′=H or CH3 R″=C1-C12 alkyl  wherein m=1-20; (B) a neutral, hydrophilic, ethylenically unsaturated monomer; and (C) a cationic ethylenically unsaturated monomer are disclosed. Aqueous solutions of the silyl-containing copolymer form transparent coatings on substrates which have very high contact angles with aqueous solutions and receive aqueous ink with very low bleeding. Substrates coated with the copolymer, methods for printing images, and methods of forming a portion or all of an electronic feature, are also disclosed.

    Abstract translation: 包含单体体系的含甲硅烷基的共聚物的组合物,其包含:(A)具有结构式(A)的含甲硅烷基的单体,其中n = 1-20,o = 1-5 R = O或NHR'= H或 CH 3 R“= C 1 -C 12烷基,其中m = 1-20; (B)中性亲水性烯属不饱和单体; 和(C)阳离子烯属不饱和单体。 含甲硅烷基的共聚物的水溶液在与水溶液具有非常高的接触角并接收非常低的渗透的水性墨水的基底上形成透明涂层。 还公开了涂覆有共聚物的底物,用于印刷图像的方法,以及形成电子特征的一部分或全部的方法。

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