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    • 6. 发明授权
    • Methods and articles for strand-specific polynucleotide detection with conjugated polymers
    • 用共轭聚合物进行链特异性多核苷酸检测的方法和文章
    • US08669055B2
    • 2014-03-11
    • US12903176
    • 2010-10-12
    • Guillermo C. BazanBin Liu
    • Guillermo C. BazanBin Liu
    • C12Q1/68C12M1/34C07H19/00C07H21/04C07H21/02G01N21/64
    • C12Q1/6818C12Q2563/119C12Q2565/101C12Q2565/519C12Q2565/607C12Q2523/313
    • The invention further relates to conjugated polymers, and methods, articles and compositions employing them as described herein. In some aspects, the invention relates to methods, articles and compositions for the detection and analysis of biomolecules in a sample. Provided assays include those determining the presence of a target biomolecule in a sample or its relative amount, or the assays may be quantitative or semi-quantitative. The methods can be performed on a substrate. The methods can be performed in an array format on a substrate, which can be a sensor. In some embodiments, detection assays are provided employing sensor biomolecules that do not comprise a fluorophore that can exchange energy with the cationic multichromophore. In some aspects biological assays are provided in which energy is transferred between one or more of the multichromophore, a label on the target biomolecule, a label on the sensor biomolecule, and/or a fluorescent dye specific for a polynucleotide, in all permutations. The multichromophore may interact at least in part electrostatically with the sensor and/or the target, and an increase in energy transfer with the polymer may occur upon binding of the sensor and the target. Other variations of the inventions are described further herein.
    • 本发明还涉及共轭聚合物,以及如本文所述使用它们的方法,制品和组合物。 在一些方面,本发明涉及用于检测和分析样品中生物分子的方法,制品和组合物。 提供的测定包括确定样品中靶生物分子的存在或其相对量的那些,或者测定可以是定量或半定量的。 该方法可以在衬底上进行。 这些方法可以以阵列格式在基底上进行,其可以是传感器。 在一些实施方案中,使用不包含能够与阳离子多重色素交换能量的荧光团的传感器生物分子来提供检测测定。 在一些方面,提供生物测定,其中在所有置换中,能量在一个或多个多色素,目标生物分子上的标记,传感器生物分子上的标记和/或多核苷酸特异的荧光染料之间转移。 多重色淀可以至少部分地与传感器和/或靶相互作用,并且当传感器和目标物结合时,聚合物的能量传递的增加可能发生。 本文进一步描述了本发明的其它变型。
    • 9. 发明授权
    • Multilayer polymer light-emitting diodes for solid state lighting applications
    • 用于固态照明应用的多层聚合物发光二极管
    • US08076842B2
    • 2011-12-13
    • US11366186
    • 2006-03-01
    • Xiong GongAlan J. HeegerDaniel MosesGuillermo C. BazanShu Wang
    • Xiong GongAlan J. HeegerDaniel MosesGuillermo C. BazanShu Wang
    • H01L51/54H01L51/56
    • H01L51/50H01L51/0003H01L51/0037H01L51/0039H01L51/0042H01L51/0043H01L51/007H01L51/0085H01L51/5012H01L51/5016H01L51/5036H01L51/5048H01L51/5088Y10S428/917Y10T428/24942
    • Multilayer polymer light-emitting diodes (PLEDs) are demonstrated using semiconducting polymers blended with organometallic emitters as the emissive layer and one or both of an electron transport layer and a hole transparent layer on the appropriate electron injection and hole injection sides of the emissive layer. The transport layers reduce energy potential gaps between the hole injection electrode and the emissive polymer and between the electron injection electrode and the emissive polymer. A solvent-processing based procedure for preparing these devices is also disclosed It uses nonpolar solvent-based solutions of emissive polymers to form the emissive layer and polar solvent-based solutions to form the transport layers to minimize etching and other undesirable interactions as the multiple layers are being laid down. Illumination quality white light can be obtained with stable Commission Internationale de l'Eclairage coordinates, stable color temperatures, and stable color rendering indices, all close to those of “pure” white light. These multilayer white light-emitting PLEDs are useful as backlights for liquid crystal displays and for solid state lighting applications.
    • 使用与有机金属发射体混合的半导体聚合物作为发射层和在发射层的合适的电子注入和空穴注入侧的电子传输层和空穴透明层中的一个或两个的多层聚合物发光二极管(PLED)。 传输层减少空穴注入电极和发射聚合物之间以及电子注入电极和发射聚合物之间的能量势隙。 还公开了用于制备这些装置的基于溶剂处理的方法。它使用发射聚合物的非极性溶剂型溶液形成发射层和极性溶剂型溶液以形成传输层,以使蚀刻和其它不希望的相互作用最小化,因为多层 正在放下 照明质量白光可以通过稳定的国际照明坐标,稳定的色温和稳定的显色指数获得,均接近于“纯”白光。 这些多层白色发光PLED可用作液晶显示器和固态照明应用的背光。