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    • 1. 发明申请
    • PARTICLES INCLUDING NANOPARTICLES, USES THEREOF, AND METHODS
    • 颗粒包括纳米颗粒,其用途和方法
    • US20120256141A1
    • 2012-10-11
    • US13414417
    • 2012-03-07
    • Robert J. NICKJohn R. Linton
    • Robert J. NICKJohn R. Linton
    • H01B1/12C09D5/22B82Y30/00
    • C08K9/10C09D5/22C09K11/02C09K11/025C09K11/565C09K11/70
    • A particle comprising nanoparticles encapsulated within a host material is disclosed, wherein the particle includes a coating disposed over at least a portion of the outer surface of the particle. In certain embodiments, nanoparticles have light-emissive properties. In certain embodiments, the coating covers all or substantially all of the outer surface of the particle. The coating can comprise a resin having low oxygen permeability. In certain embodiments, the coating comprises a polyvinyl alcohol compound. In certain embodiments, the coating comprises a polyvinylidene dichloride compound. Other embodiments relate to a powder comprising a particle of the invention, a composition including a particle of the invention, a formulation including a particle of the invention, a coating comprising a particle of the invention, a method for making a particle of the invention, and products and applications including a particle of the invention. In preferred embodiments, a nanoparticle comprises a semiconductor nanocrystal.
    • 公开了包含封装在主体材料内的纳米颗粒的颗粒,其中所述颗粒包括设置在颗粒外表面的至少一部分上的涂层。 在某些实施方案中,纳米颗粒具有发光性质。 在某些实施方案中,涂层覆盖颗粒的全部或基本上全部的外表面。 涂层可以包含具有低透氧性的树脂。 在某些实施方案中,涂层包含聚乙烯醇化合物。 在某些实施方案中,涂层包含聚偏二氯乙烯化合物。 其它实施方案涉及包含本发明的颗粒的粉末,包含本发明的颗粒的组合物,包含本发明的颗粒的制剂,包含本发明的颗粒的涂层,制备本发明的颗粒的方法, 以及包括本发明的颗粒的产品和应用。 在优选实施方案中,纳米颗粒包含半导体纳米晶体。
    • 3. 发明授权
    • Particles including nanoparticles, uses thereof, and methods
    • 包括纳米颗粒的颗粒,其用途和方法
    • US09365701B2
    • 2016-06-14
    • US13414417
    • 2012-03-07
    • Robert J. NickJohn R. Linton
    • Robert J. NickJohn R. Linton
    • C08K9/10C09K11/02C09K11/56C09K11/70C09D5/22
    • C08K9/10C09D5/22C09K11/02C09K11/025C09K11/565C09K11/70
    • A particle comprising nanoparticles encapsulated within a host material is disclosed, wherein the particle includes a coating disposed over at least a portion of the outer surface of the particle. In certain embodiments, nanoparticles have light-emissive properties. In certain embodiments, the coating covers all or substantially all of the outer surface of the particle. The coating can comprise a resin having low oxygen permeability. In certain embodiments, the coating comprises a polyvinyl alcohol compound. In certain embodiments, the coating comprises a polyvinylidene dichloride compound. Other embodiments relate to a powder comprising a particle of the invention, a composition including a particle of the invention, a formulation including a particle of the invention, a coating comprising a particle of the invention, a method for making a particle of the invention, and products and applications including a particle of the invention. In preferred embodiments, a nanoparticle comprises a semiconductor nanocrystal.
    • 公开了包含封装在主体材料内的纳米颗粒的颗粒,其中所述颗粒包括设置在颗粒外表面的至少一部分上的涂层。 在某些实施方案中,纳米颗粒具有发光性质。 在某些实施方案中,涂层覆盖颗粒的全部或基本上全部的外表面。 涂层可以包含具有低透氧性的树脂。 在某些实施方案中,涂层包含聚乙烯醇化合物。 在某些实施方案中,涂层包含聚偏二氯乙烯化合物。 其它实施方案涉及包含本发明的颗粒的粉末,包含本发明的颗粒的组合物,包含本发明的颗粒的制剂,包含本发明的颗粒的涂层,制备本发明的颗粒的方法, 以及包括本发明的颗粒的产品和应用。 在优选实施方案中,纳米颗粒包含半导体纳米晶体。
    • 5. 发明授权
    • Compositions, optical component, system including an optical component, devices, and other products
    • 组合物,光学部件,包括光学部件,装置和其它产品的系统
    • US09297092B2
    • 2016-03-29
    • US13015670
    • 2011-01-28
    • Craig BreenJohn R. Linton
    • Craig BreenJohn R. Linton
    • C07F9/38C07F9/00C01B13/14H01B13/14C30B7/14B82Y30/00C30B29/48C30B29/60
    • C30B7/14B82Y30/00C30B29/48C30B29/605
    • The present inventions relate to optical components which include quantum confined semiconductor nanoparticles, wherein at least a portion of the nanoparticles include a ligand attached to a surface thereof, the ligand being represented by the formula X-Sp-Z, wherein: X represents: a primary amine group, a secondary amine group, a urea, a thiourea, an imidizole group, an amide group, a carboxylic acid or carboxylate group, a phosphonic or arsonic acid group, a phosphoric acid group, a phosphate group, a phosphite group, a phosphinic acid group, a phosphinate group, a phosphine oxide group, a phosphinite group, a phosphine group, an arsenic acid group, an arsenate group, an arsenous acid group, an arsenite group, an arsinic acid group, an arsine oxide group, or an arsine group; Sp represents a group capable of allowing a transfer of charge or an insulating group; and Z represents a multifunctional group including three or more functional groups capable of communicating a specific property or chemical reactivity to the nanoparticle, wherein at least three of the functional groups are chemically distinct, and wherein Z is not reactive upon exposure to light. As used herein, the term “optical components” includes, but is not limited to, optical components, systems including optical components, lamps including optical components, devices including optical components, films useful in the foregoing, inks useful in making the foregoing, and compositions useful in the foregoing.
    • 本发明涉及包括量子限制半导体纳米颗粒的光学部件,其中至少一部分纳米颗粒包括与其表面连接的配体,该配体由式X-Sp-Z表示,其中:X表示:a 伯胺基,仲胺基,脲,硫脲,亚氨基咪唑基,酰胺基,羧酸或羧酸酯基,膦酸或芳基酸基,磷酸基,磷酸酯基,亚磷酸酯基, 次膦酸基,次膦酸基,氧化膦基,亚磷酸基,膦基,砷酸基,砷酸酯基,亚砷酸基,亚砷酸酯基,亚磺酸基,氧化胂基, 或胂基; Sp表示能够允许电荷转移或绝缘组的组; Z表示包括三个或更多个能够与纳米颗粒通过特定性质或化学反应性的官能团的多官能团,其中至少三个官能团在化学上不同,并且其中Z在暴露于光时不具有反应性。 如本文所用,术语“光学部件”包括但不限于光学部件,包括光学部件的系统,包括光学部件的灯,包括光学部件的装置,可用于前述的膜,用于制造前述的油墨,以及 可用于上述的组合物。
    • 6. 发明申请
    • NANOPARTICLE INCLUDING MULTI-FUNCTIONAL LIGAND AND METHOD
    • 纳米粒子包括多功能配体和方法
    • US20110245533A1
    • 2011-10-06
    • US13015651
    • 2011-01-28
    • CRAIG BREENJohn R. Linton
    • CRAIG BREENJohn R. Linton
    • C07F9/38
    • B82Y30/00C30B29/605C30B33/00G01N33/54346G01N33/587
    • A nanoparticle including an inorganic core comprising at least one metal and/or at least one semi-conductor compound comprising at least one metal includes a coating or shell disposed over at least a portion of a surface of the core. The coating can include one or more layers. Each layer of the coating can comprise a metal and/or at least one semiconductor compound. The nanoparticle further includes a ligand attached to a surface of the coating. The ligand is represented by the formula: X-Sp-Z, wherein: X represents: a primary amine group, a secondary amine group, a urea, a thiourea, an imidizole group, an amide group, a carboxylic acid or carboxylate group; a phosphoric acid group, a phosphate group, a phosphite group, a phosphinic acid group, a phosphinate group, a phosphine oxide group, a phosphinite group, a phosphine group, an arsenic acid group, an arsenate group, an arsenous acid group, an arsenite group, an arsinic acid group, an arsine oxide group, or an arsine group; Sp represents a group capable of allowing a transfer of charge or an insulating group; and Z represents a multifunctional group including three or more functional groups capable of communicating a specific property or chemical reactivity to the nanoparticle, wherein at least three of the functional groups are chemically distinct, and wherein Z is not reactive upon exposure to light. Compositions including a nanoparticle in accordance with the invention are also disclosed. Devices including nanoparticle and/or composition in accordance with the invention are disclosed. Methods for preparing nanoparticles in accordance with the invention are disclosed. Other products including a nanoparticle in accordance with the invention are also disclosed.
    • 包括包含至少一种金属和/或至少一种包含至少一种金属的半导体化合物的无机芯的纳米颗粒包括设置在芯的表面的至少一部分上的涂层或壳。 涂层可以包括一层或多层。 涂层的每个层可以包含金属和/或至少一种半导体化合物。 纳米颗粒还包括附着于涂层表面的配体。 配体由下式表示:X-Sp-Z,其中:X表示:伯胺基,仲胺基,脲,硫脲,亚氨基咪唑基,酰胺基,羧酸或羧酸酯基; 磷酸基,磷酸酯基,亚磷酸酯基,次膦酸基,次膦酸基,氧化膦基,膦基,膦基,砷酸基,砷酸酯基,亚砷酸基, 亚砷酸盐基团,亚砷酸基团,氧化胂基团或胂基团; Sp表示能够允许电荷转移或绝缘组的组; Z表示包括三个或更多个能够与纳米颗粒通过特定性质或化学反应性的官能团的多官能团,其中至少三个官能团在化学上不同,并且其中Z在暴露于光时不具有反应性。 还公开了包括根据本发明的纳米颗粒的组合物。 公开了包括根据本发明的纳米颗粒和/或组合物的装置。 公开了制备根据本发明的纳米颗粒的方法。 还公开了包括根据本发明的纳米颗粒的其它产品。
    • 8. 发明授权
    • Electrophoresis assembly and method of casting electrophoresis gels
    • 电泳组装及电泳凝胶电泳方法
    • US06682641B1
    • 2004-01-27
    • US09559906
    • 2000-04-26
    • Michael J. FinneyDaniel E. SullivanBruce R. TurnerAlexis ViraPeter B. Vander HornCharles P. AndreSean RubinCorey NislowJohn R. LintonWilliam D. Bowers
    • Michael J. FinneyDaniel E. SullivanBruce R. TurnerAlexis ViraPeter B. Vander HornCharles P. AndreSean RubinCorey NislowJohn R. LintonWilliam D. Bowers
    • B01D5702
    • G01N27/44704
    • The invention provides an electrophoresis cassette to cast electrophoresis gels and to separate and analyze molecular components by electrophoresis. The electrophoresis cassette comprises a top plate assembly, a spacer and a bottom plate. The top plate assembly is seated to the bottom plate with the spacer there between to define a thickness of the electrophoresis cassette and to seal an outer perimeter of the assembly. The top plate assembly includes a cathode reservoir connected to a first terminal end of a central plate, and an anode reservoir connected to a second terminal end of the central plate. When the electrophoresis cassette is assembled, the cathode and anode reservoirs are in alignment with the first and second terminal ends of the central plate to facilitate formation of leak-proof seals between the reservoirs and the assembly components. An embodiment of the invention provides a plurality of sample wells incorporated with the cathode reservoir and constructed of rigid, electrically non-conducting material to provide a hard-well sample loading site for uniform and consistent sample injection. Another embodiment provides a mechanical biasing system incorporated with a cathode reservoir body to bias the assembly components together. The invention also provides a method of casting electrophoresis gels with the electrophoresis cassette provided herein.
    • 本发明提供了一种电泳盒,用于铸造电泳凝胶,并通过电泳分离和分析分子成分。 电泳盒包括顶板组件,间隔件和底板。 顶板组件位于底板上,其间具有间隔件,以限定电泳盒的厚度并密封组件的外周。 顶板组件包括连接到中心板的第一末端的阴极储存器和连接到中心板的第二终端的阳极储存器。 当组装电泳盒时,阴极和阳极储存器与中心板的第一和第二终端对准,以便在储存器和组件部件之间形成防漏密封。 本发明的一个实施例提供了多个与阴极储存器结合并由刚性的非导电材料构成的样品阱,以提供用于均匀和一致的样品注入的硬孔样品加载位点。 另一个实施例提供了结合有阴极储存器主体以将组件部件偏置在一起的机械偏置系统。 本发明还提供了一种使用本文提供的电泳盒来浇铸电泳凝胶的方法。