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    • 6. 发明申请
    • ELECTRON-CONDUCTING CROSSLINKED POLYANILINE-BASED REDOX HYDROGEL, AND METHOD OF MAKING
    • 基于交联聚氨酯的REDOX HYDROGEL的电子导电及其制造方法
    • US20090321277A1
    • 2009-12-31
    • US12114359
    • 2008-05-02
    • Adam HellerBenjamin J. FeldmanNicolas ManoYueh-Lin Loo
    • Adam HellerBenjamin J. FeldmanNicolas ManoYueh-Lin Loo
    • C12Q1/54C12N9/96G01N27/30
    • G01N27/3271C12Q1/001C12Q1/005C12Q1/006C12Q1/26G01N27/327
    • A polymer matrix that may coated on an electrode is created by co-crosslinking (1) an adduct of a polyaniline formed by templated oxidative polymerization on a polymer acid; (2) a water-soluble crosslinker; and (3) a redox enzyme. The polymer matrix may be hydrated, and the absorbed water may make it permeable to, for example, glucose. The polyaniline may be polyaniline itself or a substituted polyaniline; the water-soluble crosslinker may be poly(ethylene glycol) diglycidyl ether, and the redox enzyme may be glucose oxidase. The polymer matrix may be produced by co-crosslinking (1) an adduct of an electrically conductive polymer and a polymer acid; (2) a water-soluble crosslinker; and (3) a redox enzyme in a single step at an about neutral pH, curing by drying. After hydration, the crosslinked polymer matrix may form a 3-dimensional glucose-permeable bioelectrocatalyst, catalyzing the electrooxidation of glucose.
    • 可以通过共聚交联(1)通过模板化氧化聚合形成的聚苯胺在聚合物酸上的加合物来产生可涂覆在电极上的聚合物基质; (2)水溶性交联剂; 和(3)氧化还原酶。 聚合物基质可以是水合的,并且所吸收的水可以使其可以例如葡萄糖渗透。 聚苯胺可以是聚苯胺本身或取代的聚苯胺; 水溶性交联剂可以是聚(乙二醇)二缩水甘油醚,氧化还原酶可以是葡萄糖氧化酶。 聚合物基质可以通过共交联(1)导电聚合物的加合物和聚合物酸来制备; (2)水溶性交联剂; 和(3)在大约中性pH下在一个步骤中的氧化还原酶,通过干燥固化。 水合后,交联聚合物基质可形成3维葡萄糖可渗透的生物电催化剂,催化葡萄糖的电氧化。
    • 9. 发明授权
    • Lamination as a modular approach for building organic photosensitive devices
    • 层压作为构建有机光敏器件的模块化方法
    • US09040318B2
    • 2015-05-26
    • US13083220
    • 2011-04-08
    • Yueh-Lin LooJong Bok Kim
    • Yueh-Lin LooJong Bok Kim
    • H01L21/00H01L51/00B82Y10/00H01L51/42
    • H01L51/0024B82Y10/00H01L51/0023H01L51/0036H01L51/0047H01L51/4246H01L51/4253Y02E10/549
    • There is disclosed a modular lamination approach for processing organic photosensitive devices that allows the individual processing of device components, that once processed are brought together in a final step to make electrical contact. The disclosed method of preparing a laminated photosensitive device having at least one donor-acceptor heterojunction comprises: preparing a top electrode by depositing a functional material on a flexible substrate, such as an elastomer; optionally processing the functional material to obtain desired properties prior to lamination; preparing a bottom portion by depositing a second functional material over a substrate; optionally processing the second functional material to obtain desired properties prior to lamination; and coupling the top electrode to said bottom portion to form a laminated photosensitive device.
    • 公开了一种用于处理有机光敏器件的模块化层压方法,其允许在最终步骤中将一次处理的装置部件的各个处理结合在一起以进行电接触。 所公开的制备具有至少一个供体 - 受体异质结的层压感光装置的方法包括:通过将功能材料沉积在诸如弹性体的柔性基底上来制备顶部电极; 任选地处理功能材料以在层压之前获得期望的性能; 通过在衬底上沉积第二功能材料来制备底部部分; 任选地处理第二功能材料以在层压之前获得期望的性能; 并且将顶部电极耦合到所述底部部分以形成层叠的感光装置。
    • 10. 发明申请
    • Crosslinked Adduct of Polyaniline and Polymer Acid Containing Redox Enzyme for Electrochemical Sensor
    • 聚苯胺和含有氧化还原酶的聚合物酸的电化学传感器的交联加合物
    • US20120152762A1
    • 2012-06-21
    • US13326071
    • 2011-12-14
    • Adam HellerBenjamin J. FeldmanNicolas ManoYueh-Lin Loo
    • Adam HellerBenjamin J. FeldmanNicolas ManoYueh-Lin Loo
    • G01N33/66G01N27/26
    • G01N27/3271C12Q1/001C12Q1/005C12Q1/006C12Q1/26G01N27/327
    • A polymer matrix that may coated on an electrode is created by co-crosslinking (1) an adduct of a polyaniline formed by templated oxidative polymerization on a polymer acid; (2) a water-soluble crosslinker; and (3) a redox enzyme. The polymer matrix may be hydrated, and the absorbed water may make it permeable to, for example, glucose. The polyaniline may be polyaniline itself or a substituted polyaniline; the water-soluble crosslinker may be poly(ethylene glycol)diglycidyl ether, and the redox enzyme may be glucose oxidase. The polymer matrix may be produced by co-crosslinking (1) an adduct of an electrically conductive polymer and a polymer acid; (2) a water-soluble crosslinker; and (3) a redox enzyme in a single step at an about neutral pH, curing by drying. After hydration, the crosslinked polymer matrix may form a 3-dimensional glucose-permeable bioelectrocatalyst, catalyzing the electrooxidation of glucose.
    • 可以通过共聚交联(1)通过模板化氧化聚合形成的聚苯胺在聚合物酸上的加合物来产生可涂覆在电极上的聚合物基质; (2)水溶性交联剂; 和(3)氧化还原酶。 聚合物基质可以是水合的,并且所吸收的水可以使其可以例如葡萄糖渗透。 聚苯胺可以是聚苯胺本身或取代的聚苯胺; 水溶性交联剂可以是聚(乙二醇)二缩水甘油醚,氧化还原酶可以是葡萄糖氧化酶。 聚合物基质可以通过共交联(1)导电聚合物的加合物和聚合物酸来制备; (2)水溶性交联剂; 和(3)在大约中性pH下在一个步骤中的氧化还原酶,通过干燥固化。 水合后,交联聚合物基质可形成3维葡萄糖可渗透的生物电催化剂,催化葡萄糖的电氧化。