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    • 1. 发明授权
    • Micropatterning of molecular surfaces via selective irradiation
    • 通过选择性辐射微分谱分子表面
    • US08173347B2
    • 2012-05-08
    • US11201915
    • 2005-08-11
    • Jeffrey T. KobersteinFeng PanKwangjoo LeePeng Wang
    • Jeffrey T. KobersteinFeng PanKwangjoo LeePeng Wang
    • G03F7/00
    • G03F7/095B05D1/185B05D5/005B29C59/16B29C2035/0827B29L2009/005B82Y30/00G03F7/165
    • A method for surface micropatterning includes forming on a surface containing a first polymer a first coating containing a second polymer having first functionalities capable of being converted to second functionalities by exposure to an acid. A second coating containing a photoacid generator is formed on the first coating. The second coating containing the photoacid generator is selectively irradiated in one or more regions thereof with radiation having a spatially varying internsity pattern to generate an acid in each irradiated region of the second coating. The acid converts the first functionalities of each region of the second polymer underlying a respective irradiated region of the second coating to second functionalities. A first molecular patterned surface having one or more regions of the first functionalities and one or more regions of the second functionalities is formed.
    • 表面微图案的方法包括在包含第一聚合物的表面上形成含有第一聚合物的第一涂层,所述第二聚合物具有通过暴露于酸而能够转化为第二官能团的第一官能度。 在第一涂层上形成含有光致酸发生剂的第二涂层。 含有光致酸产生剂的第二涂层在其一个或多个区域中用具有空间变化的内部结构图案的辐射选择性地照射,以在第二涂层的每个照射区域中产生酸。 酸将第二涂层的相应照射区域下面的第二聚合物的每个区域的第一官能团转化为第二官能团。 形成具有第一功能的一个或多个区域和第二功能的一个或多个区域的第一分子图案化表面。
    • 7. 发明申请
    • MODIFICATION OF SURFACES WITH NANOPARTICLES
    • 用纳米粒子修饰表面
    • US20110059264A1
    • 2011-03-10
    • US12844635
    • 2010-07-27
    • Ellane J. ParkNicholas J. TurroJeffrey T. Koberstein
    • Ellane J. ParkNicholas J. TurroJeffrey T. Koberstein
    • C08F2/50C08J7/04
    • C08J7/18C08J2325/06C09D1/00C09D7/62C09D7/67
    • Methods for functionalizing a surface of a substrate with nanoparticles are described. In certain embodiments, the method can include attaching a plurality of photoactive linker to nanoparticles to obtain photoactive nanoparticles, wherein each photoactive linker comprises a binding group that attaches to the nanoparticles and a photoactive group; depositing the photoactive nanoparticles to the surface of the substrate, wherein the surface of the substrate comprises reactive groups that are capable of reacting with the photoactive groups; and irradiating the photoactive nanoparticles with radiation to react the photoactive group with the reactive group and to functionalize the surface of the substrate with nanoparticles. In certain embodiments, the method can include attaching a plurality of photoactive linker to a surface of a substrate to obtain a photoactive surface, wherein each photoactive linker comprises a photoactive group and a binding group that attaches to the surface of the substrate; depositing nanoparticles to the photoactive surface, wherein the nanoparticles comprise reactive groups that are capable of reacting with the photoactive groups; and irradiating the photoactive surface with radiation to react the photoactive group with the reactive group to functionalize the surface of the substrate with nanoparticles.
    • 描述了用纳米颗粒官能化底物表面的方法。 在某些实施方案中,该方法可以包括将多个光活性连接体连接到纳米颗粒以获得光活性纳米颗粒,其中每个光活性连接体包含附着于纳米颗粒和光活性基团的结合基团; 将光敏纳米颗粒沉积到基底的表面,其中基底的表面包含能够与光活性基团反应的反应性基团; 并用辐射照射光活性纳米颗粒以使光活性基团与反应性基团反应,并用纳米颗粒使基底的表面官能化。 在某些实施方案中,该方法可以包括将多个光活性连接体连接到底物的表面以获得光活性表面,其中每个光活性连接体包含光活性基团和连接到基底表面的结合基团; 将纳米颗粒沉积到光敏表面,其中所述纳米颗粒包含能够与光活性基团反应的反应性基团; 并用辐射照射光活性表面以使光活性基团与反应性基团反应,以用纳米颗粒使基底的表面官能化。
    • 10. 发明授权
    • Functionalization of organic surfaces
    • 有机表面的功能化
    • US08507572B2
    • 2013-08-13
    • US12796462
    • 2010-06-08
    • Jeffrey LancasterNicholas J. TurroJeffrey T. Koberstein
    • Jeffrey LancasterNicholas J. TurroJeffrey T. Koberstein
    • C08F2/50C08F2/42C08F2/46
    • C08J3/28C07D209/49
    • The present invention relates to functionalizing a surface of an organic material. For example, surfaces of materials having C—H bonds, such as polymers having C—H bonds, can be functionalized. In certain embodiments, a heterobifunctional molecule having a photoactive anchor, a spacer, and a terminal functional group is applied to the surface of an organic material that contains one or more C—H bonds. The heterobifunctional molecule can be bound to any surface having C—H bonds as the photoactive anchor can react with C—H bonds upon irradiation. The terminal functional group has a “click” functionality which can be utilized to functionalize the surface of the organic material with any desired functionalizing moiety having the orthogonal click functionality.
    • 本发明涉及官能化有机材料的表面。 例如,具有C-H键的材料的表面,例如具有C-H键的聚合物,可以被官能化。 在某些实施方案中,具有光活性锚,间隔基和末端官能团的异双功能分子被施加到含有一个或多个C-H键的有机材料的表面上。 异双功能分子可以与具有C-H键的任何表面结合,因为光活性锚可以在照射时与C-H键反应。 末端官能团具有“点击”功能,其可用于利用具有正交点击功能的任何所需官能化部分官能化有机材料的表面。