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    • 85. 发明授权
    • Un-supported polymeric film with embedded microbeads
    • 具有嵌入微珠的未负载的聚合物膜
    • US09436088B2
    • 2016-09-06
    • US11761789
    • 2007-06-12
    • Michael SeulSukanta BanerjeeKairali PodualYe Hong
    • Michael SeulSukanta BanerjeeKairali PodualYe Hong
    • G01N33/553G03F7/16G03F7/004
    • C08J3/075C08J3/28C08J2333/26C08J2425/06C12Q1/6837G01N33/5005G01N33/545G03F7/0047G03F7/164Y10T428/249952Y10T428/25
    • The present invention relates to polymer-bead composites having a single layer planar, crystalline assembly of encoded beads embedded in a hydrophilic polymeric matrix. The composite may be unattached to a solid support. The encoded beads have different biomolecules attached to their surfaces, and the encoding permits distinguishing beads having different biomolecules attached thereto. The present invention also relates to a systematic process for the creation of functionally organized, spatially patterned assemblies of polymer-microparticle composites, including the AC electric field-mediated assembly of patterned, self-supporting organic (polymeric) films and organic-polymer-microparticle composites of tailored composition and morphology. The present invention also relates to the application of such functional assemblies in materials science and biology. Additional areas of application include sensors, catalysts, membranes, and micro-reactors, and miniaturized format for generation of multifunctional thin films.
    • 本发明涉及具有嵌入亲水性聚合物基质中的编码珠粒的单层平面结晶组合物的聚合物 - 珠复合物。 复合材料可能不附着在固体支撑物上。 编码的珠粒具有连接到其表面的不同生物分子,并且编码允许区分附着有不同生物分子的珠粒。 本发明还涉及一种用于创建聚合物 - 微粒复合材料的功能组织的空间图案化组件的系统方法,包括图案化的自支撑有机(聚合物)膜和有机 - 聚合物 - 微粒的AC电场介导装配 定制组合和形态的复合材料。 本发明还涉及这种功能组件在材料科学和生物学中的应用。 其他应用领域包括传感器,催化剂,膜和微反应器以及用于产生多功能薄膜的小型化形式。