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    • 4. 发明授权
    • Nuclear magnetic resonance analysis of multiple samples
    • 多个样品的核磁共振分析
    • US06696838B2
    • 2004-02-24
    • US09938996
    • 2001-08-24
    • Daniel RafteryGeorge G. FisherErnesto McNamara
    • Daniel RafteryGeorge G. FisherErnesto McNamara
    • G01V300
    • G01R33/34053G01R33/302G01R33/307G01R33/3628G01R33/365G01R33/422
    • A Nuclear Magnetic Resonance (NMR) probe device (20) is disclosed. NMR probe device (20) includes a plurality of detection coils (30, 40) each operable to detect a signal from a corresponding one of a plurality of samples (34, 44) undergoing NMR analysis. Also included is a plurality of tuning circuits (31, 41, 38, 48) each coupled to one of detection coils (30, 40) to tune the one of the detection coils (30, 40) to a corresponding resonant frequency for the NMR analysis of the corresponding one of the samples. An electromagnetic shield (22) is positioned between a first one of the detection coils (30, 40) and a second one of the detection coils (30, 40) to isolate the first one of the detection coils (30, 40) and the second one of the detection coils (30, 40) from each other.
    • 公开了核磁共振(NMR)探针装置(20)。 NMR探针装置(20)包括多个检测线圈(30,40),每个检测线圈可操作以检测来自经历NMR分析的多个样品(34,44)中相应的一个的信号。 还包括多个调谐电路(31,41,38,48),每个调谐电路耦合到一个检测线圈(30,40),以将检测线圈(30,40)中的一个调谐到相应的NMR谐振频率 分析相应的一个样本。 电磁屏蔽(22)位于第一检测线圈(30,40)和第二检测线圈(30,40)之间,以隔离第一检测线圈(30,40)和第 检测线圈(30,40)中的第二个。
    • 5. 发明授权
    • Nuclear magnetic resonance analysis of multiple samples
    • 多个样品的核磁共振分析
    • US06958609B2
    • 2005-10-25
    • US10785918
    • 2004-02-24
    • Daniel RafteryErnesto McNamara
    • Daniel RafteryErnesto McNamara
    • G01R33/30G01R33/36G01V3/00
    • G01R33/34053G01R33/302G01R33/307G01R33/3628G01R33/365G01R33/422
    • A Nuclear Magnetic Resonance (NMR) probe device (20) is disclosed. NMR probe device (20) includes a plurality of detection coils (30, 40) each operable to detect a signal from a corresponding one of a plurality of samples (34, 44) undergoing NMR analysis. Also included is a plurality of tuning circuits (31, 41, 38, 48) each coupled to one of detection coils (30, 40) to tune the one of the detection coils (30, 40) to a corresponding resonant frequency for the NMR analysis of the corresponding one of the samples. An electromagnetic shield (22) is positioned between a first one of the detection coils (30, 40) and a second one of the detection coils (30, 40) to isolate the first one of the detection coils (30, 40) and the second one of the detection coils (30, 40) from each other.
    • 公开了核磁共振(NMR)探针装置(20)。 NMR探针装置(20)包括多个检测线圈(30,40),每个检测线圈可操作以检测来自经历NMR分析的多个样品(34,44)中相应的一个的信号。 还包括多个调谐电路(31,41,38,48),每个调谐电路耦合到一个检测线圈(30,40),以将检测线圈(30,40)中的一个调谐到相应的NMR谐振频率 分析相应的一个样本。 电磁屏蔽(22)位于第一检测线圈(30,40)和第二检测线圈(30,40)之间,以隔离第一检测线圈(30,40)和第 检测线圈(30,40)中的第二个。
    • 8. 发明授权
    • Photochemical catalysts and methods for their manufacture and use
    • 光化学催化剂及其制造和使用方法
    • US06685889B1
    • 2004-02-03
    • US09736516
    • 2000-12-13
    • Daniel RafteryAjit R. PradhanMegan A. Macnaughtan
    • Daniel RafteryAjit R. PradhanMegan A. Macnaughtan
    • B01J1908
    • B01J37/0246B01J19/127B01J29/084B01J35/004B01J35/06B01J37/0217B01J2219/0892
    • Photochemical catalysts and methods for their manufacture and use are provided. In one aspect of the invention, a photochemical catalyst includes an optical microfiber coated with a catalytic amount of a molecular sieve, such as a zeolite. In one preferred form, at least a portion of the outer surface of the optical microfiber is cladding-free to allow radial transmission of light to the molecular sieve coating. In another aspect of the invention, a method of making a photochemical catalyst is provided that includes depositing a catalytic amount of a molecular sieve onto an outer surface of an optical microfiber, wherein the optical microfiber is configured to transmit light to the molecular sieve. A method of photocatalysis utilizing the above-described photocatalysts includes exposing the photocatalyst and a reactant to a light source to photocatalytically react the reactant.
    • 提供了光化学催化剂及其制造和使用方法。 在本发明的一个方面,光化学催化剂包括涂覆有催化量的分子筛如沸石的光学超细纤维。 在一种优选形式中,光学超细纤维的外表面的至少一部分是无包层的,以允许将光径向透射到分子筛涂层。 在本发明的另一方面,提供一种制备光化学催化剂的方法,其包括将催化量的分子筛沉积在光学超细纤维的外表面上,其中所述光学超细纤维被配置为将光透射到分子筛。 使用上述光催化剂的光催化剂的方法包括将光催化剂和反应物暴露于光源以使反应物光催化反应。