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    • 1. 发明申请
    • Mesoporous Monoliths Containing Conducting Polymers
    • 包含导电聚合物的介孔整体
    • US20110223331A1
    • 2011-09-15
    • US12884278
    • 2010-09-17
    • Brett D. MartinMichael A. MarkowitzBrian Melde
    • Brett D. MartinMichael A. MarkowitzBrian Melde
    • B05D7/14B05D7/00
    • H01B1/20H01L51/0037Y10T428/249953
    • The present invention relates to a mesoporous monolith containing a conducting polymer such as poly(3,4-ethylenedioxythiophene) and methods for making the monolith. The mesoporous monolith is electroactive, at least semi-transparent and has one or more of a large internal pore surface area, pore size and pore volume. It can be used for various applications in photovoltaics, sensing electrochromics, separations, reversible ion exchange and control of protein activity. The method employs hydrothermal treatment and/or substantially complete drying to obtain the desirable properties of the monolith. Conducting polymer can be covalently bound to the internal pore surfaces and polymerized in situ to partially or completely fill the pores producing increased mechanical strength and a high conductivity per unit area.
    • 本发明涉及一种含有聚(3,4-亚乙二氧基噻吩)等导电性聚合物的中孔整料及其制造方法。 中孔整料是电活性的,至少是半透明的并且具有一个或多个大的内孔表面积,孔径和孔体积。 它可用于各种光伏应用,感测电致变色,分离,可逆离子交换和蛋白质活性的控制。 该方法采用水热处理和/或基本上完全干燥以获得整料的理想特性。 导电聚合物可以共价结合到内孔表面,并原位聚合以部分或完全填充孔隙,产生增加的机械强度和每单位面积的高导电率。
    • 2. 发明申请
    • MESOPOROUS MONOLITHS CONTAINING CONDUCTING POLYMERS
    • 包含导电聚合物的多孔单体
    • US20090130422A1
    • 2009-05-21
    • US11942542
    • 2007-11-19
    • Brett D. MartinMichael A. MarkowitzBrian Melde
    • Brett D. MartinMichael A. MarkowitzBrian Melde
    • B32B3/26B05D7/22
    • H01B1/20H01L51/0037Y10T428/249953
    • The present invention relates to a mesoporous monolith containing a conducting polymer such as poly(3,4-ethylenedioxythiophene) and methods for making the monolith. The mesoporous monolith is electroactive, at least semi-transparent and has one or more of a large internal pore surface area, pore size and pore volume. It can be used for various applications in photovoltaics, sensing electrochromics, separations, reversible ion exchange and control of protein activity. The method employs hydrothermal treatment and/or substantially complete drying to obtain the desirable properties of the monolith. Conducting polymer can be covalently bound to the internal pore surfaces and polymerized in situ to partially or completely fill the pores producing increased mechanical strength and a high conductivity per unit area.
    • 本发明涉及一种含有聚(3,4-亚乙二氧基噻吩)等导电性聚合物的中孔整料及其制造方法。 中孔整料是电活性的,至少是半透明的并且具有一个或多个大的内孔表面积,孔径和孔体积。 它可用于各种光伏应用,感测电致变色,分离,可逆离子交换和蛋白质活性的控制。 该方法采用水热处理和/或基本上完全干燥以获得整料的理想特性。 导电聚合物可以共价结合到内孔表面,并原位聚合以部分或完全填充孔隙,产生增加的机械强度和每单位面积的高导电率。
    • 7. 发明授权
    • Sugar-containing hydrogel for immobilization
    • 含糖水凝胶用于固定
    • US07785770B2
    • 2010-08-31
    • US11444819
    • 2006-05-19
    • Mark S. SpectorDavid A. StengerCharles H. Patterson, Jr.Brett D. MartinPaul T. Charles
    • Mark S. SpectorDavid A. StengerCharles H. Patterson, Jr.Brett D. MartinPaul T. Charles
    • C12Q1/00
    • G01N33/548G01N33/54353
    • The use of sugar-containing hydrogels as very highly porous, aqueous support material for the immobilization of oligonucleotides, peptides, proteins, antigens, antibodies, polysaccharides, and other biomolecules for sensor applications. Unusually large sizes of interconnected pores allow large target molecules to pass rapidly into and through the gel and bind to immobilized biomolecules. Sugar-containing hydrogels have extremely low non-specific absorption of labeled target molecules, providing low background levels. Some hydrogel materials do not have this type of homogeneous interconnected macroporosity, thus large target molecules cannot readily diffuse through them. Additionally, they nearly always experience non-specific absorption of labeled target molecules, limiting their usefulness in sensor applications. A method is provided for preparing sugar polyacrylate hydrogels with functional chemical groups which covalently bond oligonucleotides and peptides. A method for copolymerizing acrylate-terminated oligonucleotides with sugar acrylate monomers and diacrylate cross-linking agents is also provided.
    • 使用含糖水凝胶作为用于固定寡核苷酸,肽,蛋白质,抗原,抗体,多糖和其他用于传感器应用的生物分子的非常高度多孔的水性支持材料。 异常大尺寸的相互连通的孔允许大的目标分子快速通过并通过凝胶并结合固定化的生物分子。 含糖水凝胶对标记的靶分子具有极低的非特异性吸收,提供低的背景水平。 一些水凝胶材料不具有这种类型的均匀相互连接的大孔隙度,因此大的靶分子不能容易地通过它们扩散。 此外,它们几乎总是经历对标记的靶分子的非特异性吸收,限制了它们在传感器应用中的用途。 提供了一种制备具有共价键合寡核苷酸和肽的功能化学基团的糖聚丙烯酸酯水凝胶的方法。 还提供了将丙烯酸酯封端的寡核苷酸与糖丙酯单体和二丙烯酸酯交联剂共聚的方法。